Atmospheric Measurements

Harvard-Smithsonian Center for Astrophysics


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  • Publications

    First Arab Winter School for Astrophysics (FAWSA 2016)

    Tropospheric Emissions: Monitoring of Pollution (TEMPO) sites/presentations

    • Smithsonian TEMPO site
    • TEMPO Fact Sheet
    • North American pollution measurements from geostationary orbit with Tropospheric Emissions: Monitoring of Pollution (TEMPO). pptx
    • TEMPO Mission Overview and Status, 1st Tropospheric Emissions: Monitoring of Pollution (TEMPO) Applications Workshop, Shelby Center, University of Alabama in Huntsville, 2016. pptx
    • Medición de contaminantes atmosféricos desde plataformas satelitales (principalmente TEMPO), Encuentro Nacional de Respuestas al Cambio Climático: Calidad del Aire, Mitigatión y Adaptación, El Instituto Nacional de Ecología y Cambio Climático, Mexico, 2016. pptx
    • Tropospheric Emissions: Monitoring of Pollution (TEMPO) - Status and Potential Science Studies, American Physical Society Division of Atomic, Molecular and Optical Physics Meeting, 2016 pptx
    • Tropospheric Emissions: Monitoring of Pollution (TEMPO) - status and potential science studies, ESA Living Planet Symposium, 2016 pptx
    • Status of Tropospheric Emissions: Monitoring of Pollution, AGU Fall 2015, pptx
    • Converting Paper into Hardware: A Status of the TEMPO Instrument Design and Manufacturing, AGU Fall 2015 pptx
    • Overview of TEMPO for the 11th meeting of the Atmospheric Composition Constellation group of the Committee on Earth Observation Satellites, April 2015 pptx
    • A TEMPO for the Middle East, 11th Conference of the Arab Union for Astronomy and Space Sciences (AUASS), December 2014 pptx
    • Implementation of Tropospheric Emissions: Monitoring of Pollution (TEMPO), Korean GEMS Science Team Meeting, October 2014 pptx
    • Tropospheric Emissions: Monitoring of Pollution (TEMPO) Status, June 2014 pptx pdf
    • Status of the first NASA EV-I Project, Tropospheric Emissions: Monitoring of Pollution (TEMPO), AGU Fall 2013 pptx
    • TEMPO overview pptx
    • NASA Funds SAO Instrument to Track North American Air Pollution URL
    • New Space Sensor as a Hosted Payload to Track Air Pollution Across North America URL

    Publications

    2020

    • New Era of Air Quality Monitoring from Space: Geostationary Environment Monitoring Spectrometer (GEMS), Jhoon Kim et al., BAMS, January 2020. https://doi.org/10.1175/BAMS-D-18-0013.1
    • Validation of satellite formaldehyde (HCHO) retrievals using observations from 12 aircraft campaigns, Zhu, L., González Abad, G., Nowlan, C.R., Chan Miller, C., Chance, K., Apel, E.C., DiGangi, J.P., Fried, A., Hanisco, T.F., Hornbrook, R.S., Hu, L., Kaiser, J., Keutsch, F.N., Permar, W., St. Clair, J.M., and Wolfe, G.M., Atmos. Chem. Phys. Discuss., https://doi.org/10.5194/acp-2019-1117, 2020.
    • Revisiting the effectiveness of HCHO/NO2 ratios for inferring ozone sensitivity to its precursors using high resolution airborne remote sensing observations in a high ozone episode during the KORUS-AQ campaign, A.H. Souri, C.R. Nowlan, G.M. Wolfe, L.N. Lamsal, C.E. Chan Miller, G. González Abad, S.J. Janz, A. Fried, D.R. Blake, A.J. Weinheimer, G.S. Diskin, X. Liu, and K. Chance, Atmospheric Environment 117341, 2020. https://doi.org/10.1016/j.atmosenv.2020.117341
    • A precise photometric ratio via laser excitation of the sodium layer I: One-photon excitation using 342.78 nm light, J. Albert, D. Budker, K. Chance, I.E. Gordon, F. Pedreros Bustos, M. Pospelov, S. Rochester, and H.R. Sadeghpour. https://arxiv.org/abs/2001.10958

    2019

    • TEMPO Green Paper: Chemistry, physics, and meteorology experiments with the Tropospheric Emissions: Monitoring of Pollution instrument, K. Chance, X. Liu, C. Chan Miller, G. González Abad, G. Huang, C. Nowlan, A. Souri, R. Suleiman, K. Sun, H. Wang, L. Zhu, P. Zoogman, J. Al-Saadi, J-C. Antuña-Marrero, J. Carr, R. Chatfield, M. Chin, R. Cohen, D. Edwards, J. Fishman, D. Flittner, J. Geddes, M. Grutter, J.R. Herman, D.J. Jacob, S. Janz, J. Joiner, J. Kim, N.A. Krotkov, B. Lefer, R.V. Martin, O.L. Mayol-Bracero, A. Naeger, M. Newchurch, G.G. Pfister, K. Pickering, R.B. Pierce, C. Rivera Cádenas, A. Saiz-Lopez, W. Simpson, E. Spinei, R.J D. Spurr, J.J. Szykman, O. Torres, and J. Wang, Proc. SPIE 11151, Sensors, Systems, and Next-Generation Satellites XXIII, 111510B, 2019. https://doi.org/10.1117/12.2534883
    • Improve the accuracy, long-term consistency, and speed of the SAO OMI ozone profile product, X. Liu, J. Bak, C. Nowlan, C. Chan Miller, G. González Abad, K. Yang, R. Spurr, G. Huang, K. Sun, and K. Chance, Earth and Space Science Open Archive (ESSOAr), 2019.
    • Potential of next-generation imaging spectrometers to detect and quantify methane point sources from space, D.H. Cusworth, D.J. Jacob, D.J. Varon, C. Chan Miller, X. Liu, K. Chance, A.K. Thorpe, R.M. Duren, C.E. Miller, D.R. Thompson, C. Frankenberg, L. Guanter, and C.A. Randles, Atmos. Meas. Tech., in press.
    • Ozone Monitoring Instrument (OMI) Total Column Water Vapor version 4 validation and applications, H. Wang, A.H. Souri, G. González Abad, X. Liu, and K. Chance, Atmos. Meas. Tech., 12, 5183-5199, 2019. https://doi.org/10.5194/amt-12-5183-2019
    • Cross-evaluation of GEMS tropospheric ozone retrieval performance using OMI data and the use of an ozonesonde dataset over East Asia for validation, J. Bak, K.-H. Baek, J.-H. Kim, X. Liu, J. Kim, and K. Chance, Atmos. Meas. Tech., 12, 5201~5215, 2019. https://doi.org/10.5194/amt-12-5201-2019
    • Explicit aerosol correction of OMI formaldehyde retrievals, Y. Jung, G. González Abad, C.R. Nowlan, K. Chance, X. Liu, O. Torres, and C. Ahn, Earth and Space Science, Paper #2019EA000702RR, in press, 2019.
    • OMI total column water vapor version 4 validation and applications, H. Wang, A.H. Souri, G. González Abad,X. Liu, and K. Chance, Atmos. Meas. Tech., in press, 2019.
    • New Era of air quality monitoring from space: Geostationary Environment Monitoring Spectrometer (GEMS), J. Kim, U. Jeong, M.-H. Ahn, J.H. Kim, et al., Bulletin of the American Meteorological Society, in press, 2019.
    • TEMPO: Monitoring North America's pollution from space, K. Chance, Scientia, 2019. http://tempo.si.edu/
    • Modeling wildfire smoke feedback mechanisms using a coupled fire~ atmosphere model with a radiatively active aerosol scheme, A.K. Kochanski, D.V. Mallia, M.G. Fearon, J. Mandel, A.H. Souri, and T. Brown. J. Geophys. Res. Atmos., 124, 2019. https://doi.org/10.1029/2019JD030558
    • The impact of the direct effect of aeosols on meteorology and air quality using aerosol optical depth assimilation during the KORUS-AQ campaign, J. Jung, A.H. Souri, D. Wong, S. Lee, W. Jeon, J. Kim, and Y. Choi. J. Geophys. Res. Atmos. 2019. https://doi.org/10.1029/2019JD030641
    • Linearization of the effect of slit function changes for improving Ozone Monitoring Instrument ozone profile retrievals, J. Bak, X. Liu, K. Sun, K. Chance, and J.-H. Kim Atmos. Meas. Tech., 12, 3777-3788, 2019. https://doi.org/10.5194/amt-12-3777-2019
    • Description of a formaldehyde retrieval algorithm for the Geostationary Environment Monitoring Spectrometer (GEMS), H.-A. Kwon, R.J. Park, G. González Abad, K. Chance, T.P. Kurosu, J. Kim, I. De Smedt, M. Van Roozendael, E. Peters, and J. Burrows, Atmos. Meas. Tech., 12, 3551-3571, 2019. https://doi.org/10.5194/amt-12-3551-2019
    • Five decades observing Earth's atmospheric trace gases using ultraviolet and visible backscatter solar radiation from space, G. González Abad, A.H. Souri, C. Li, C. Nowlan, C. Chan Miller, H. Wang, J. Bak, K. Chance, L. Flynn, L. Lamsal, N. Krotkov, R.M. Suleiman, and X. Liu, J. Quant. Spectrosc. Radiat. Transfer, 238, 106478, 2019. https://doi.org/10.1016/j.jqsrt.2019.04.030
    • OMI total bromine monoxide (OMBRO) data product: Algorithm, retrieval and measurement comparisons, R.M. Suleiman, K. Chance, X. Liu, G. González Abad, T.P. Kurosu, F. Hendrick, and N. Theys, Atmos. Meas. Tech., 12, 2067-2084, 2019. https://doi.org/10.5194/amt-12-2067-2019
    • Update of the HITRAN collision-induced absorption section, T. Karman, I.E. Gordon, A. van der Avoird, Y.I. Baranov, C. Boulet, B.J. Drouin, G.C. Groenenboom, M. Gustafsson, J.-M. Hartmann, R.L. Kurucz, L.S. Rothman, K. Sun, K. Sung, R. Thalman, H. Tran, E.H. Wishnow, R. Wordsworth, A.A. Vigasin, R. Volkamer, and W.J. van der Zande, Icarus, 328, 160-175, 2019. https://doi.org/10.1016/J.ICARUS.2019.02.034
    • Ozone intensities in the rotational bands, M. Birk, G. Wagner, I.E. Gordon, and B.J. Drouin, J. Quant. Spectrosc. Radiat. Transfer, 226, 60-65, 2019. https://doi.org/10.1016/J.JQSRT.2019.01.004
    • Cross-verification of simulated GEMS tropospheric ozone retrievals and ozonesonde measurements over Northeast Asia, J. Bak, K.-H. Baek, J.-H. Kim, X. Liu, J. Kim, and K. Chance, Atmos. Meas. Tech. Discuss, in review, 2019. https://doi.org/10.5194/amt-2019-19
    • Linkage of tropospheric ozone trends to poleward expansion of Hadley Circulation in the Southern Hemisphere, L. Xiao, L. Zhang, Y. Zhao, D.J. Jacob, Y. Hu, H. Lu, M. Gao, X. Liu, I. Petropavlovskikh, A. McClure-Begley, and R. Querel, Science Bulletin, 64, 400-409, 2019. https://doi.org/10.1016/j.scib.2018.12.021
    • Towards a satellite formaldehyde - in situ hybrid estimate for organic aerosol abundance, J. Liao, T.F. Hanisco, G.M. Wolfe, J. St. Clair, J.L. Jimenez, P. Campuzano-Jost, B.A. Nault, A. Fried, E.A. Marais, G. González Abad, K. Chance, H.T. Jethva1, T.B. Ryerson, C. Warneke, and A. Wisthaler, Atmos. Chem. Phys., 19, 2765-2785, 2019. https://doi.org/10.5194/acp-19-2765-2019
    • Precipitable water vapor over oceans from the Maritime Aerosol Network: Evaluation of global models and satellite products under clear sky conditions, D. Perez, A. Ramirez, R. Smirnov, T. Pinker, M. Petrenko, R. Roman, W. Chen, C. Ichokuc S. Noel, G. González Abad, H. Lyamani, and B.N. Holben, Atmos. Res., 215, 294-304, 2019.

    2018

    • A highly accurate ab initio dipole moment surface for the ground electronic state of water vapour for spectra extending into the ultraviolet, E.K. Conway, A.A. Kyuberis, O.L. Polyansky, J. Tennyson, and N.F. Zobov, J. Chem. Phys. 149, 084307, 2018. https://doi.org/10.1063/1.5043545
    • Study on lower tropospheric ozone over central and eastern China: Comparison of satellite observation with model simulation, S. Hayashida, S. Kayaba, M. Deushi, K. Yamaji, A. Ono, M. Kajino, T.T. Sekiyama, T. Maki, and X. Liu, In K. Vadrevu, T. Ohara, C. Justice (eds.) Land-Atmospheric Research Applications in South and Southeast Asia. Springer Remote Sensing/Photogrammetry, https://doi.org/10.1007/978-3-319-67474-2_13, 2018.
    • First top-down estimates of anthropogenic NOx emissions using high-resolution airborne remote sensing observations, A. H. Souri, Y. Choi, S. Pan, G. Curci, C.R. Nowlan, S.J. Janz, M.G. Kowalewski, J. Liu, J.R. Herman, A. J. Weinheimer, and J. H. Flynn, Journal of Geophysical Research: Atmospheres, 123, 3269-3284, 2018. https://doi.org/10.1002/2017JD028009
    • Recent advances in collisional effects on spectra of molecular gases and their practical consequences,J.-M. Hartmann, H. Tran, R. Armante, C. Boulet, A. Campargue, F. Forget, L. Gianfrani, I. Gordon, S. Guerlet, M. Gustafsson, J.T. Hodges, S. Kassi, D. Lisak, F. Thibault, and G.C. Toon, J. Quant. Spectrosc. Radiat. Transfer, 213, 178~227, 2018. https://doi.org/10.1016/J.JQSRT.2018.03.016
    • Positions, intensities and line shape parameters for the 1 ← 0 bands of CO isotopologues, V.M. Devi, D.C. Benner, K. Sung, T.J. Crawford, G. Li, R.R. Gamache, M.A.H. Smith, I.E. Gordon, and A.W. Mantz, J. Quant. Spectrosc. Radiat. Transfer, 218, 203~230, 2018. https://doi.org/10.1016/j.jqsrt.2018.06.007
    • Semi-empirical ground-state potential of carbon monoxide with physical behavior in the limits of small and large inter-atomic separations, V. V. Meshkov, A. V. Stolyarov, A.Y. Ermilov, E.S. Medvedev, V.G. Ushakov, and I.E. Gordon, J. Quant. Spectrosc. Radiat. Transfer, 217, 262~273, 2018. https://doi.org/10.1016/j.jqsrt.2018.06.001.
    • O2~O2 and O2~N2 collision-induced absorption mechanisms unravelled, T. Karman, M.A.J. Koenis, A. Banerjee, D.H. Parker, I.E. Gordon, A. Van Der Avoird, W.J. Van Der Zande, and G.C. Groenenboom, Nat. Chem., 10, 549-554, 2018. https://doi.org/10.1038/s41557-018-0015-x
    • Retrievals of tropospheric ozone profiles from the synergism of AIRS and OMI: Methodology and validation, D. Fu, S.S. Kulawik, K. Miyazaki, K. Bowman, J.R. Worden, A. Eldering, N.J. Livesey, J. Teixeira, F.W. Irion, R.L. Herman, G.B. Osterman, X. Liu, P.F. Levelt, A.M. Thompson, and M. Luo, Atmos. Meas. Tech., 11, 5587-5605, 2018. https://doi.org/10.5194/amt-11-5587-2018
    • Potential sources of a priori ozone profiles for TEMPO tropospheric ozone retrievals, M.S. Johnson, X. Liu, P. Zoogman, J. Sullivan, M.J. Newchurch, S. Kuang, T. Leblanc, and T. McGee, Atmos. Meas. Tech., 11, 3457-3477, 2018. https://doi.org/10.5194/amt-11-3457-2018
    • Tropospheric Ozone Assessment Report: Present-day distribution and trends of tropospheric ozone relevant to climate and global atmospheric chemistry model evaluation, A. Gaudel, O.R. Cooper, G. Ancellet, B. Barret, A. Boynard, J.P. Burrows, C. Clerbaux, P.-F. Coheur, J. Cuesta, E. Cuevas, S. Doniki, G. Dufour, F. Ebojie, G. Foret, O. Garcia, M.J. Granados-Muñoz, J. Hannigan, F. Hase, B. Hassler, G. Huang, D. Hurtmans, D. Jaffe, N. Jones, P. Kalabokas, B. Kerridge, S. Kulawik, B. Latter, T. Leblanc, E. Le Flochmoën, W. Lin, J. Liu, X. Liu, E. Mahieu, A. McClure-Begley, J.L. Neu, M. Osman, M. Palm, H. Petetin, I. Petropavlovskikh, R. Querel, N. Rahpoe, A. Rozanov, M.G. Schultz, J. Schwab, R. Siddans, D. Smale, M. Steinbacher, H. Tanimoto, D. Tarasick, V. Thouret, A.M. Thompson, T. Trickl, E. Weatherhead, C. Wespes, H. Worden, C. Vigouroux, X. Xu, G. Zeng, and J. Ziemke, Elem. Sci. Anth., 6:39, 2018. https://doi.org/10.1525/elementa.291
    • Optimal Estimation-Based Algorithm to Retrieve Aerosol Optical Properties for GEMS Measurements Over Asia, M. Kim, J. Kim, O. Torres, C. Ahn, W.V. Kim, U. Jeong, S. Go, X. Liu, K.J. Moon, and D.R. Kim, Remote Sens., 10(2), 162, doi:10.3390/rs10020162, 2018.
    • Lower tropospheric ozone over India and its linkage to the South Asian monsoon , X. Lu, L. Zhang, X. Liu, M. Gao, Y. Zhao, and J. Shao, Atmos. Chem. Phys., 18, 3101-3118, 2018. https://doi.org/10.5194/acp-18-3101-2018
    • Preflight evaluation of the performance of Chinese Environmental trace gases Monitoring Instrument (EMI) by spectral analyses of nitrogen dioxide, C. Zhang, C. Liu, Y. Wang, S. Beirle, F. Si, H. Zhou, M. Zhao, W. Su, W. Zhang, K.L. Chan, X. Liu, and T. Wagner, IEEE Transaction on Geoscience and Remote Sensing, doi:10.1109/TGRS.2018.2798038, 56 (6), 3323-3332, 2018.
    • Seasonality of the lower tropospheric ozone over central China observed by the Ozone Monitoring Instrument, S. Hayashida, M. Kajino, M. Deushi, T. T. Sekiyama, and X. Liu, Atmos. Environ., 184, 244-253, https://doi.org/10.1016/j.atmosenv.2018.04.014, 2018.
    • Space-time variability in UTLS chemical distribution in the Asian summer monsoon viewed by limb and nadir satellite sensors, J. Luo, L.L. Pan, S.B. Honomichl, J.W. Bergman, W.J. Randel, G. Francis, C. Clerbaux, M. George, X. Liu, and W. Tian, Atmos. Chem. Phys., 18, 12511-12530, https://doi.org/10.5194/acp-18-12511-2018, 2018.
    • A physics-based approach to oversample multi-satellite, multispecies observations to a common grid, K. Sun, L. Zhu, K. Cady-Pereira, C. Chan Miller, K. Chance, L. Clarisse, P.-F. Coheur, G. González Abad, G. Huang, X. Liu, M. Van Damme, K. Yang, and M. Zondlo, Atmos. Meas. Tech., 11, 6679-6701, 2018. https://doi.org/10.5194/amt-11-6679-2018
    • Nitrogen dioxide and formaldehyde measurements from the GEOstationary Coastal and Air Pollution Events (GEO-CAPE) Airborne Simulator over Houston, Texas, C.R. Nowlan, X. Liu, S.J. Janz, M.G. Kowalewski, K. Chance, M.B. Follette-Cook, A. Fried, G. Gonzalez Abad, J.R. Herman, L.M. Judd, H.-A. Kwon, C.P. Loughner, K.E. Pickering, D. Richter, E. Spinei, J. Walega, P. Weibring, and A.J. Weinheimer, Atmos. Meas. Tech., 11, 5941-5964, 2018. https://doi.org/10.5194/amt-11-5941-2018
    • High-resolution inversion of OMI formaldehyde columns to quantify isoprene emission on ecosystem-relevant scales: application to the southeast US, J. Kaiser, D.J. Jacob, L. Zhu, K.R. Travis, J.A. Fisher, G. Gonzalez Abad, L. Zhang, X. Zhang, A. Fried, J.D. Crounse, J.M. St. Clair, and A. Wisthaler, Atmos. Chem. Phys., 18, 5483-5497, 2018.
    • High Resolution Spectroscopy using Fabry Perot Intereferometer Arrays: An Application to Searches for O2 in Exoplanetary Atmospheres, S. Ben-Ami, M. Lopez-Morales, J. Garcia-Mejia, G. Gonzalez Abad, and A. Szentgyorgyi, Ap. J., 861(2), doi:10.3847/1538-4357/aac835, 2018.
    • Adjoint inversion of Chinese non-methane volatile organic compound emissions using space-based observations of formaldehyde and glyoxal, H. Cao, T.-M. Fu, L. Zhang, D.K. Henze, C. Chan Miller, C. Lerot, G. Gonzalez Abad, I. De Smedt, Q. Zhang, M. van Roozendael, F. Hendrick, K. Chance, J. Li, J. Zheng, and Y. Zhao, Atmos. Chem. Phys., 18, 15017-15046, 2018.
    • Reevaluating the use of O2 a1Δg band in spaceborne remote sensing of greenhouse gases, K. Sun, I.E. Gordon, C.E. Sioris, X. Liu, K. Chance, and S.C. Wofsy, Geophys. Res. Lett., 45 (11), 5779-5787, 2018GL077823RR, 2018. https://doi.org/10.1029/2018GL077823
    • Link between Arctic tropospheric BrO explosion observed from space and sea salt aerosols from blowing snow investigated using Ozone Monitoring Instrument (OMI) BrO data and GEOS-5 data assimilation system, S. Choi, J. Joiner, N. Theys, R.J. Salawitch, P.A. Wales, T.P. Canty, K. Chance, R. Suleiman, S.P. Palm, R.I. Cullather, A.S. Darmenov, A. da Silva, and T.P. Kurosu, J. Geophys. Res. Atmospheres, JGRD54662 doi:10.1029/2017JD026889, 2018.
    • The Ozone Monitoring Instrument: Overview of 14 years in space, P.F. Levelt, J. Joiner, J. Tamminen, J.P. Veefkind, et al., Atmos. Chem. Phys., 18, 5699-5745, https://doi.org/10.5194/acp-18-5699-2018, 2018.
    • Adjoint inversion of Chinese non-methane volatile organic compound emissions using space-based observations of formaldehyde and glyoxal, H. Cao, T.-M. Fu, L. Zhang, D.K. Henze, C. Chan Miller, C. Lerot, G. González Abad, I. De Smedt, Q. Zhang, M. Van Roozendael, K. Chance, J. Li, J. Zheng, and Y. Zhao, Atmos. Chem. Phys. Discuss., https://doi.org/10.5194/acp-2017-1136, 2018.
    • Validation of 10-year SAO OMI ozone profile (PROFOZ) product using Aura MLS measurements, G. Huang, X. Liu, K. Chance, K. Yang, and Z. Cai, Atmos. Meas. Tech., 11, 17-32, 2018. https://doi.org/10.5194/amt-11-17-2018

    2017

    • High accuracy absorption coefficients for the Orbiting Carbon Observatory-2 (OCO-2) mission: Validation of updated carbon dioxide cross-sections using atmospheric spectra, F. Oyafuso, V.H. Payne, B.J. Drouin, V.M. Devi, D.C. Benner, K. Sung, S. Yu, I.E. Gordon, R. Kochanov, Y. Tan, D. Crisp, E.J. Mlawer, and A. Guillaume, J. Quant. Spectrosc. Radiat. Transfer, 203, 213~223, 2017. https://doi.org/10.1016/J.JQSRT.2017.06.012
    • Intensity anomalies in the rotational and ro-vibrational spectra of diatomic molecules, E.S. Medvedev, V.G. Ushakov, A. V. Stolyarov, I.E. Gordon, J. Chem. Phys., 147, 164309, 2017. https://doi.org/ 10.1063/1.5000717
    • Global budget of tropospheric ozone: evaluating recent model advances with satellite (OMI), aircraft (IAGOS), and ozonesonde observations, L. Hu, D.J. Jacob, X. Liu, Y. Zhang, L. Zhang, P.S. Kim, M.P. Sulprizio, R.M. Yantosca, Atmos. Environ., 167, 323-334, https://doi.org/10.1016/j.atmosenv.2017.08.036, 2017.
    • Total internal partition sums for 166 isotopologues of 51 molecules important in planetary atmospheres: Application to HITRAN2016 and beyond, R.R. Gamache, C. Roller, E. Lopes, I.E. Gordon, L.S. Rothman, O.L. Polyansky, N.F. Zobov, A.A. Kyuberis, J. Tennyson, S.N. Yurchenko, A.G. Császár, T. Furtenbacher, X. Huang, D.W. Schwenke, T.J. Lee, B.J. Drouin, S.A. Tashkun, V.I. Perevalov, and R. V. Kochanov, J. Quant. Spectrosc. Radiat. Transfer, 203, 70~87, 2017. https://doi.org/10.1016/j.jqsrt.2017.03.045
    • Global O3-CO correlations in a chemistry and transport model during july~august: Evaluation with TES satellite observations and sensitivity to input meteorological data and emissions, H.-D. Choi, H. Liu, J.H. Crawford, D.B. Considine, D.J. Allen, B.N. Duncan, L.W. Horowitz, J.M. Rodriguez, S.E. Strahan, L. Zhang, X. Liu, M.R. Damon, and S.D. Steenrod, Atmos. Chem. Phys., 17, 8429-8452, https://doi.org/10.5194/acp-17-8429-2017, 2017.
    • OMI air-quality monitoring over the Middle East, M.P. Barkley, G. González Abad, T.P. Kurosu, R. Spurr, S. Torbatian, and C. Lerot, Atmos. Chem. Phys., 17, 4687-4709, doi:10.5194/acp-17-4687-2017, 2017. https://www.atmos-chem-phys.net/17/4687/2017/
    • Inter-comparison of integrated water vapor from satellite instruments using reference GPS data at the Iberian Peninsula, J. Vaquero-Martínez, M. Antó, J.P. Ortiz de Galisteo, V.E. Cachorro, P. Álvarez-Zapatero, R. Román D. Loyola, M.J. Costa, H. Wang, G. González Abad, and S. Noël, Remote Sensing of Environment, 204, 729-740, 2017. https://doi.org/10.1016/j.rse.2017.09.028
    • Which processes drive observed variations of HCHO columns over India? L. Surl, P.I. Palmer, and G. González Abad, Atmos. Chem. Phys. Disc., https://doi.org/10.5194/acp-2017-1017,, 2017.
    • Deriving the slit functions from OMI solar observations and its implications for ozone-profile retrieval, K. Sun, X. Liu, G. Huang, G. Gonzalez Abad, Z. Cai, K. Chance, and K. Yang, Atmos. Meas. Tech., 10, 3677-3695, 2017. https://doi.org/10.5194/amt-10-3677-2017
    • Characterization and correction of OMPS nadir mapper measurements for ozone profile retrievals, J. Bak, X. Liu, J.-H. Kim, D.P. Haffner, K. Chance, K. Yang, and K. Sun, Atmos. Meas. Tech., 10, 4373-4388, 2017. https://doi.org/10.5194/amt-10-4373-2017
    • Evaluating a space-based indicator of surface ozone-NOx-VOC sensitivity over mid-latitude source regions and application to decadal trends, X, Jin, A.M. Fiore, L.T. Miller, L.N. Lamsal, B. Duncan, K.F. Boersma, I. De Smedt, G. Gonzalez Abad, K. Chance, and G.S. Tonnesen, J. Geophys. Res. Atmos., 122. https://doi.org/10.1002/2017JD026720, 2017.
    • Long-term (2005-2014) trends in formaldehyde (HCHO) columns across North America as seen by the OMI satellite instrument: Evidence of changing emissions of volatile organic compounds, L. Zhu, L.J. Mickley, D.J. Jacob, E.A. Marais, J. Sheng, L. Hu, G.Gonzalez Abad, and K. Chance, Geophys. Res. Lett., 44(13), 7079-7086, 2017.
    • The Ozone Monitoring Instrument: Overview of twelve years in space, P. Levelt, J. Joiner, J. Tamminen, et al., Atmos. Chem. Phys. Discuss., https://doi.org/10.5194/acp-2017-48, 2017.
    • The HITRAN2016 Molecular Spectroscopic Database, I.E. Gordon, L.S. Rothman, C. Hill, R.V. Kochanov, Y. Tan, et al., J. Quant. Spectrosc. Radiat. Transfer, doi:10.1016/j.jqsrt.2017.06.038, 2017.
    • A Geostationary air quality monitor for the Middle East, R.M. Suleiman, K Chance, and X Liu, IOP Conf. Series: Journal of Physics: Conf. Series 869, 012085, doi:10.1088/1742-6596/869/012085, 2017. http://iopscience.iop.org/article/10.1088/1742-6596/869/1/012085
    • Atmospherics and the Anthropocene, K. Chance, in "Living in the Anthropocene: Earth in the Age of Humans," Eds. J.W. Kress and J.K. Stine, Smithsonian Books, ISBN:9781588346018, 2017.
    • Glyoxal yield from isoprene oxidation and relation to formaldehyde: chemical mechanism, constraints from SENEX aircraft observations, and interpretation of OMI satellite data, C.C. Miller, D.J. Jacob, E.A. Marais, K. Yu, et al., Atmos. Chem. Phys., acp-2016-1042, 2017.
    • Formaldehyde (HCHO) as a hazardous air pollutant: Mapping surface air concentrations from satellite and inferring cancer risks in the United States, L. Zhu, D.J. Jacob, F.N. Keutsch, L.J. Mickley, R. Scheffe, M. Strum, G. González Abad, K. Chance, K. Yang, B. Rappenglück, D.B. Millet, M. Baasandorj, Lyatt Jaeglé, and Viral Shah, Environ. Sci. Technol., doi: 10.1021/acs.est.7b01356, 2017.
    • "Spectroscopy and Radiative Transfer of Planetary Atmospheres," K. Chance and R.V. Martin, Oxford University Press, ISBN-13: 978-0199662104, 2017. https://global.oup.com/academic/product/spectroscopy-and-radiative-transfer-of-planetary-atmospheres-9780199662104?cc=us&lang=en&
    • Sensitivity of formaldehyde (HCHO) column measurements from a geostationary satellite to aerosol temporal variation in East Asia H.-A. Kwon, R.J. Park, J.I. Jeong, S.Lee, G. González Abad, T.P. Kurosu, P.I. Palmer, and K. Chance, Atmos. Chem. Phys., in press, 2017.
    • Characterization of the OCO-2 instrument line shape functions using on-orbit solar measurements, K. Sun, X. Liu, C.R. Nowlan, Z. Cai, K. Chance, C. Frankenberg, R.A.M. Lee, R. Pollock, R. Rosenberg, and D. Crisp, Atmos. Meas. Tech., 10, 939-953, doi:10.5194/amt-10-939-2017, 2017. http://www.atmos-meas-tech.net/10/939/2017/
    • Validation of 10-year SAO OMI ozone profile (PROFOZ) product using ozonesonde observations, G. Huang, X. Liu, K. Chance, et al., Atmos. Meas. Tech. Discuss., doi:10.5194/amt-2017-15, 2017. http://www.atmos-meas-tech-discuss.net/amt-2017-15/amt-2017-15.
    • Observing nightlights from space with TEMPO, J. Carr, X. Liu, B. Baker, and K. Chance, International Journal of Sustainable Lighting, 19, 26-35, 2017. http://lightingjournal.org/index.php/path/article/view/64/69
    • Tropospheric Emissions: Monitoring of Pollution (TEMPO), P. Zoogman, X. Liu, R.M. Suleiman, et al., J. Quant Spectrosc. Radiat. Transfer, 186, 17-39, 2017, doi:10.1016/j.jqsrt.2016.05.008.
    • Validation of integrated water vapor from IMU satellite instrument against reference GPS data at the Iberian Peninsula, Vaquero-Martinez, J., Anton M., Ortiz de Galisteo, J.P., Cachorro, V.E., Wang, H., Gonzalez Abad, G., Roman, R., and Costa, M., Science of the Total Environment, STOTEN-D-16-05467R1, in press, 2017.
    • Summertime tropospheric ozone enhancement associated with a cold front passage due to stratosphere-to-troposphere transport and biomass burning: simultaneous ground-based lidar and airborne measurements, Kuang, S., et al., J. Geophys. Res. Atmos., 121, doi:10.1002/2016JD026078, 2017.

    2016

    • Absorption cross-sections of ozone in the ultraviolet and visible spectral regions: Status report 2015. J. Orphal, J. Staehelin, J. Tamminen, Johanna, et al., J. Mol. Spectrosc., 327, 105-121, doi:10.1016/j.jms.2016.07.007, 2016.
    • The role of OH production in interpreting the variability of CH2O columns in the southeast U.S., Valin, L.C., A.M. Fiore, K. Chance, and G. Gonzalez Abad, J. Geophys. Res. Atmos., 121, 478-493, doi:10.1002/2015JD024012, 2016. http://onlinelibrary.wiley.com/doi/10.1002/2015JD024012/full
    • OMI air-quality monitoring over the Middle East, Barkley, M., G. Gonzalez Abad, T.P. Kurosu, R. Spurr, S. Torbatian, and C. Lerot, Atmos. Chem. Phys. Discuss., doi:10.5194/acp-2016-784, 2016. http://www.atmos-chem-phys-discuss.net/acp-2016-784/
    • Satellite observations of atmospheric methane and their value for quantifying methane emissions, D.J. Jacob, A.J. Turner, J.D. Maasakkers, J. Sheng, K. Sun, X. Liu, K. Chance, I. Aben, J. McKeever, and C. Frankenberg, Atmos. Chem. Phys., 16, 14371-14396, doi:10.5194/acp-16-14371-2016. http://www.atmos-chem-phys.net/16/14371/2016/
    • Observing atmospheric formaldehyde (HCHO) from space: validation and intercomparison of six retrievals from four satellites (OMI, GOME2A, GOME2B, OMPS) with SEAC4RS aircraft observations over the Southeast US, L. Zhu, D.J. Jacob, P.S. Kim, et al., Atmos. Chem. Phys., 16, 13477-13490, doi:10.5194/acp-16-13477-2016, 2016. http://www.atmos-chem-phys.net/16/13477/2016/
    • A climatology of visible surface reflectance spectra P. Zoogman, X. Liu, K. Chance, Q. Sun, C. Schaaf, T. Mahr, and T. Wagner, J. Quant. Spectrosc. Radiat. Transfer, 180, 39-46, doi:10.1016/j.jqsrt.2016.04.003, 2016.
    • Validation and update of OMI Total Column Water Vapor product, H. Wang, G. Gonzalez Abad, X. Liu, and K. Chance, Atmos. Chem. Phys., 16, 11379-11393, doi:10.5194/acp-16-11379-2016, 2016. http://www.atmos-chem-phys.net/16/11379/2016/
    • Improvement of OMI ozone profile retrievals by simultaneously fitting polar mesospheric clouds, J. Bak, X. Liu, J.H. Kim, M.T. Deland, and K. Chance, Atmos. Meas. Tech., 9, 4521-4531, doi:10.5194/amt-9-4521-2016, 2016. http://www.atmos-meas-tech.net/9/4521/2016/
    • Multi-perspective observations of NO2 over the Denver area during DISCOVER-AQ: Insights for future monitoring, J.H. Crawford, B. Pierce, R. Long, J. Szykman, J. Leitch, C. Nowlan, J. Herman, A. Weinheimer, and J.A. Al-Saadi, EM Magazine, August 2016. http://www.awma.org/publications/em-magazine
    • Smithsonian Astrophysical Observatory Ozone Mapping and Profiler Suite (SAO OMPS) formaldehyde retrieval, G. González Abad, A. Vasilkov, C. Seftor, X. Liu, and K. Chance, Atmos. Meas. Tech., 9, 2797-2812, 2016. http://www.atmos-meas-tech.net/9/2797/2016/
    • Nitrogen dioxide observations from the Geostationary Trace gas and Aerosol Sensor Optimization (GeoTASO) airborne instrument: Retrieval algorithm and measurements during DISCOVER-AQ Texas 2013, C.R. Nowlan et al., Atmos. Meas. Tech., 9, 2647-2668, 2016. http://www.atmos-meas-tech.net/9/2647/2016/
    • Hotspot of glyoxal over the Pearl River Delta seen from the OMI satellite instrument: Implications for emissions of aromatic hydrocarbons, C. Chan Miller, D.J. Jacob, G. González Abad, and K. Chance, Atmos. Chem. Phys., 16, 4631-4639, doi:10.5194/acp-16-4631-2016, 2016. http://www.atmos-chem-phys.net/16/4631/2016/
    • An optimal-estimation-based aerosol retrieval algorithm using OMI near-UV observations, U. Jeong, J. Kim, C. Ahn, O. Torres, X. Liu, P.K. Bhartia, R.J.D. Spurr, D. Haffner, K. Chance, and B.N. Holben, Atmos. Chem. Phys., 16, 177-193, doi:10.5194/acp-16-177-2016, 2016. http://www.atmos-chem-phys.net/16/177/2016/

    2015

    • Analysis of ACAM Data for Trace Gas Retrievals during the 2011 DISCOVER-AQ Campaign, C. Liu, X. Liu, M.G. Kowalewski, S.J. Janz, G. González Abad, K.E. Pickering, K. Chance, and L.N. Lamsal, J. Spectroscopy, 2015, ID827160, doi:10.1155/2015/827160, 2015, 827160, 2015. http://www.hindawi.com/journals/jspec/2015/827160/
    • Retrieval of Aerosol Microphysical Properties from AERONET Photo-Polarimetric Measurements, 2: A New Research Algorithm and Case Demonstration, X. Xu, J. Wang, J. Zeng, R. Spurr, X. Liu, O. Dubovik, L. Li, Z. Li, M. Mischenko, A. Sinyuk, B. Holben, J. Geophys. Res., 120 7079-7098, doi:10.1002/2015JD023113, 2015.
    • Simultaneous retrievals of polar mesospheric clouds (PMCs) with ozone from OMI UV measurements, J. Bak, X. Liu, J.H. Kim, M.T. Deland, and K. Chance, Atmos. Chem. Phys. Discuss., 15, 25,907-25,932, doi:10.5194/acpd-15-25907-2015, 2015. http://www.atmos-chem-phys-discuss.net/15/25907/2015/
    • A geostationary air quality monitoring platform for Africa, E.A. Marais and K. Chance, The Clean Air Journal, 25, 40-45, http://dx.doi.org/10.17159/2410-972X/2015/v25n1a3, 2015
    • Observation of ozone enhancement in the lower troposphere over East Asia from a space-borne ultraviolet spectrometer, S. Hayashida, X. Liu, A. Ono, K. Yang, and K. Chance, Atmos. Chem. Phys., 15, 9865-9881, doi:10.5194/acp-15-9865-2015, 2015. http://www.atmos-chem-phys.net/15/9865/2015/
    • Development and characterisation of a state-of-the-art GOME-2 formaldehyde air-mass factor algorithm, W. Hewson, M. P. Barkley, G. Gonzalez Abad, H. Bosch, T. Kurosu and R. Spurr, Atmos. Meas. Tech. Discuss., 8, 1109-1150, doi:10.5194/amtd-8-1109-2015, 2015.
    • Characterization and verification of ACAM slit functions for trace gas retrievals during the 2011 DISCOVER-AQ flight campaign, C. Liu, X. Liu, M.G. Kowalewski, S.J. Janz, G. González Abad, K.E. Pickering, K. Chance, and L.N. Lamsal, Atmos. Meas. Tech., 8, 751-759, doi:10.5194/amt-8-751-2015, 2015. http://www.atmos-meas-tech.net/8/751/2015/
    • Validation of OMI total ozone retrievals from the SAO ozone profile algorithm and three operational algorithms with Brewer measurements, J. Bak, X. Liu, J.H. Kim, K. Chance, and D.P. Haffner, Atmos. Chem. Phys., 15, 667-683, doi:10.5194/acp-15-667-2015, 2015. http://www.atmos-chem-phys.net/15/667/2015/
    • Updated Smithsonian Astrophysical Observatory Ozone Monitoring Instrument (SAO OMI) formaldehyde retrieval, G. González Abad, X. Liu, K. Chance, H. Wang, T.P. Kurosu, and R. Suleiman, Atmos. Meas. Tech., 8, 19-32, doi:10.5194/amt-8-19-2015, 2015. http://www.atmos-meas-tech.net/8/19/2015/

    2014

    • Sunwatching: Human Footprints on Earth and Sky, K. Chance, in "American Indian," Spring 2014. PDF
    • Validation of OMI HCHO data and its analysis over Asia, Baek, K.H., J.H. Kim, R.J. Park, K. Chance, and T.P. Kurosu, Science of the Total Environment, 490, 93-105, doi: 10.1016/j.scitotenv.2014.04.108, 2014.
    • Anthropogenic emissions in Nigeria and implications for atmospheric ozone pollution: A view from space, E.A. Marais, D.J. Jacob, K. Wecht, C. Lerot, L. Zhang, K. Yu, T.P. Kurosu, K. Chance, and B. Sauvage, Atmos. Env., 99, 32-40, doi:10.1016/j.atmosenv.2014.09.055, 2014.
    • Retrieval and validation of carbon dioxide, methane and water vapor for the Canary Islands IR-laser occultation experiment, V.P. Proschek, K.G. Kirchengast, S.S. Schweitzer, J.S. Brooke, P.F. Bernath, C.B. Thomas, J.G. Wang, K.A. Tereszchuk, G. González Abad, R. Hargreaves, C. Beale, J. Harrison, P. Martin, V. Kasyutich, C. Gerbig, O. Kolle and A. Loescher, Atmos. Meas. Tech. Discuss., 7, 11593-11652, doi:10.5194/amtd-7-11593-2014, 2014.
    • Assessment and applications of NASA ozone data products derived from Aura OMI/MLS satellite measurements in context of the GMI chemical transport model, J.R. Ziemke, M.A. Olsen, J.C. Witte, A.R. Douglass, S.E. Strahan, K. Wargan, X. Liu, M.R. Schoeberl, K Yang, T.B. Kaplan, S. Pawson, B.N. Duncan, P.A. Newman, P.K. Bhartia, and M.K. Heney, J. Geophys. Res. Atmos., 119, doi:10.1002/2013JD020914, 2014.
    • Sensitivity studies for monitoring tropospheric ozone from space using the ultraviolet and visible and the polarization bands, Z.-N Cai, Y. Liu, and X. Liu,, Atmos. Oceanic Sci. Lett., 7, 198-202, doi:10. 3878/j.issn.1674-2834.13.0092, 2014.
    • The relationship between column-density and surface mixing ratio: Statistical analysis of O3 and NO2 data from the July 2011 Maryland DISCOVER-AQ Mission, C. Flynn, K.E. Pickering, J.H. Crawford, L. Lamsal, N. Krotkov, J. Herman, A. Weinheimer, G. Chen, X. Liu, J. Szykman, S.-C. Tsay, C. P. Loughner, J. Hains, P. Lee, R.R. Dickerson, J.W. Stehr, and L. Brent, Atmos. Environ., DOI: 10.1016/j.atmosenv.2014.04.041, 2014.
    • Ozone pollution: What can we see from space? A case study, G. Foret, M. Eremenko, J. Cuesta, P. Sellitto, J. Barre, B. Gaubert, A. Coman, G. Dufour, X. Liu, M. Joly, and M. Beekmann, J. Geophys. Res. Atmos., 119, 8476-8499, doi:10.1002/2013JD021340, 2014.
    • Glyoxal retrieval from the Ozone Monitoring Instrument, C. Chan Miller, G. Gonzalez Abad, H. Wang, X. Liu, T. Kurosu, D.J. Jacob, and K. Chance, Atmos. Meas. Tech., 7, 3891-3907, 2014. http://www.atmos-meas-tech.net/7/3891/2014/
    • Global dry deposition of nitrogen dioxide and sulfur dioxide inferred from space-based measurements, C.R. Nowlan, R.V. Martin, S. Philip, L. Lamsal, N. Krotkov, E.A. Marais, S. Wang, and Q. Zhang, Global Biogeochem. Cy., 28, 1025-1043, doi:10.1002/2014GB004805, 2014. Journal cover
    • Anthropogenic emissions of highly reactive volatile organic compounds in eastern Texas inferred from oversampling of satellite (OMI) measurements of HCHO columns, L. Zhu, D. Jacob, L. Mickley, E. Marais, D. Cohan, Y. Yoshida, B. Duncan G. González Abad, and K. Chance, Env. Res. Lett., 9, 114004, 2014. http://stacks.iop.org/1748-9326/9/114004
    • Improved model of isoprene emissions in Africa using Ozone Monitoring Instrument (OMI) satellite observations of formaldehyde: implications for oxidants and particulate matter, E.A. Marais, D.J. Jacob, A. Guenther, K. Chance, T.P. Kurosu, J.G. Murphy, C.E. Reeves, and H.O.T. Pye, Atmos. Chem. Phys., 14, 7693-7703, doi:10.5194/acp-14-7693-2014, 2014. www.atmos-chem-phys.net/14/7693/2014/
    • Detecting industrial pollution in the atmospheres of earth-like exoplanets, H.W. Lin, G. González Abad, and A. Loeb, Ap. J. Lett., 792, L7, doi:10.1088/2041-8205/792/1/L7, 2014.
    • The added value of a visible channel to a geostationary thermal infrared instrument to monitor ozone for air quality, E. Hache, J.-L. Attié, C. Tourneur, P. Ricaud, L. Coret, W. A. Lahoz, L. El Amraoui, B. Josse, P. Hamer, J. Warner, X. Liu, K. Chance, M. Höpfner, R. Spurr, V. Natraj, S. Kulawik, A. Eldering, and J. Orphal, Atmos. Meas. Tech., 7, 2185-2201, doi:10.5194/amt-7-2185-2014, 2014. http://www.atmos-meas-tech.net/7/2185/2014/amt-7-2185-2014.html
    • Water vapor retrieval from OMI visible spectra, H. Wang, X. Liu, K. Chance, G. González Abad, and C. Chan Miller, Atmos. Meas. Tech., 7, 1901-1913, 2014. PDF
    • Monitoring high-ozone events in the US Intermountain West using TEMPO geostationary satellite observations, P. Zoogman, D.J. Jacob, K. Chance, X. Liu, M. Lin, A. Fiore, and K. Travis, Atmos. Chem. Phys., 14, 6261-6271, 2014. http://www.atmos-chem-phys.net/14/6261/2014/. PDF
    • A numerical testbed for remote sensing of aerosols, and its demonstration for evaluating retrieval synergy from a geostationary satellite constellation of GEO-CAPE and GOES-R, J. Wang, X. Xu, S. Ding, J. Zeng, R. Spurr, X. Liu, K. Chance, and M. Mishchenko, JQSRT, 146, 510-528, doi:10.1016/j.jqsrt.2014.03.020, 2014. PDF
    • Improved monitoring of surface ozone by joint assimilation of geostationary satellite observations of ozone and CO, P. Zoogman, D.J. Jacob, K. Chance, H.M. Worden, D.P. Edwards, and L. Zhang, Atm. Env.,84, p. 254-261, doi:10.1016/j.atmosenv.2013.11.048, 2014.

    2013

    • ACE-FTS observations of pyrogenic trace species in boreal biomass burning plumes during BORTAS, K.A. Tereszchuk, G. Gonzalez Abad, C. Clerbaux, J. Hadji-Lazaro, D. Hurtmans, P.-F. Coheur, and P.F. Bernath, Atmos. Chem. Phys., 13, 4529-4541, doi:10.5194/acp-13-4529-2013, 2013.
    • Ground-based Lidar for boundary layer ozone measurements, S. Kuang, M.J. Newchurch, J. Burris, and X. Liu, Applied Optics, 52(15), 3557-3566, doi:10.1364/ AO.52.003557, 2013.
    • A global tropospheric ozone climatology from trajectory-mapped ozone soundings, G. Liu, J.J. Liu, D.W. Tarasick, V.E. Fioletov, J.J. Jin, O. Moeni, X. Liu, and C.E. Sioris, Atmos. Chem. Phys., 13, 10659-10675, doi:10.5194/acp-13-10659-2013, 2013.
    • Impact of anthropogenic emissions on seasonal changes in tropospheric nitrogen dioxide and ozone over East China, J. Huang, C. Zhou, X. Lee1, Y. Bao, X. Zhao, J. Fung, A. Richter, and X. Liu, Atmos. Env., 77, 558-567, doi:10.1016/j.atmosenv.2013.05.030 2013.
    • Transport effects on the vertical distribution of tropospheric ozone over the tropical marine regions surrounding India, S. Lal, S. Venkataramani, S. Srivastava, S. Gupta, C. Mallik, M. Naja, Y. Acharya, and X. Liu, J. Geophys. Res., doi: 10.1002/jgrd.50180, 2012.
    • Characterization of ozone profiles derived from Aura TES and OMI Radiances, D. Fu, J.R. Worden, X. Liu, S.S. Kulawik, K.W. Bowman, and V. Natraj, Atmos. Chem. Phys., 13, 3445-3462, doi:10.5194/acp-13-3445-2013, 2013.
    • The HITRAN2012 molecular spectroscopic database, L.S. Rothman, I.E. Gordon, Y. Babikov, et al., JQSRT 130, 4-50, doi:10.1016/j.jqsrt.2013.07.002, 2013.
    • The impact of using different ozone cross sections on ozone profile retrievals from OMI UV measurements, C. Liu, X. Liu, and K. Chance, JQSRT 130, 365-372, doi:10.1016/j.jqsrt.2013.06.006, 2013.
    • New retrieval of BrO from SCIAMACHY limb: An estimate of the stratospheric bromine loading during April 2008, J.P. Parrella, K. Chance, R.J. Salawitch, T. Canty, M. Dorf, and K. Pfeilsticker, Atmos. Meas. Tech., 6, 2549-2561, doi:10.5194/amt-6-2549-2013, 2013. http://www.atmos-meas-tech.net/6/2549/2013/
    • Satellite observation of lowermost tropospheric ozone by multispectral synergism of IASI thermal infrared and GOME-2 ultraviolet measurements, J. Cuesta, M. Eremenko, X. Liu, G. Dufour, Z. Cai, M. Hoepfner, T. von Clarmann, P. Sellitto, G. Foret, B. Gaubert, M. Beekmann, J. Orphal, K. Chance, R. Spurr, and J.-M. Flaud, Atmos. Chem. Phys., 13, 9675-9693, 2013. http://www.atmos-chem-phys.net/13/9675/2013/
    • Global ozone-CO correlations from OMI and AIRS: Constraints on tropospheric ozone sources, P.S. Kim, D.J. Jacob1, X. Liu, J.X. Warner, K. Yang, K. Chance, V. Thouret, and P. Nedelec, Atmos. Chem. Phys., 13, 9321-9335, 2013. http://www.atmos-chem-phys.net/13/9321/2013/
    • Application of OMI, SCIAMACHY and GOME-2 satellite SO2 retrievals for detection of large emission sources, V.E. Fioletov, C.A. McLinden, N. Krotkov, K. Yang, D.G. Loyola, P. Valks, N. Theys, M. Van Roozendael, C. Nowlan, K. Chance, X. Liu, C. Lee, and R.V. Martin, J. Geophys. Res., 118, 11,399-11,418, doi:10.1002/jgrd.50826, 2013.
    • Improvement of OMI ozone profile retrievals in the upper troposphere and lower stratosphere by the use of a tropopause-based ozone profile climatology, J. Bak, X. Liu, J.C. Wei, L.L. Pan, K. Chance, and J.H. Kim, Atmos. Meas. Tech., 6, 2239-2254, 2013. http://www.atmos-meas-tech.net/6/2239/2013/
    • Tropospheric emissions: Monitoring of pollution (TEMPO), K. Chance, X. Liu, R.M. Suleiman, D.E. Flittner, J. Al-Saadi, and S.J. Janz, Proc. SPIE,Vol. 8866, Earth Observing Systems XVIII, Paper 88660D, doi:10.1117/12.2024479, 2013. Draft PDF
    • Top-down isoprene emissions over tropical South America inferred from SCIAMACHY and OMI formaldehyde columns, M.P. Barkley, I. De Smedt, M. Van Roozendael, T.P. Kurosu, K. Chance, A. Arneth, D. Hagberg, A. Guenther, F. Paulot, E. Marais, and J. Mao, J. Geophys. Res., 118, 6849-6868, doi:10.1002/jgrd.50552, 2013.
    • Estimating the influence of lightning on upper tropospheric ozone using NLDN lightning data and CMAQ model, L. Wang, M.J. Newchurch, A. Pour-Biazar, S. Kuang, M. Khan, X. Liu, W. Koshak, and K. Chance, Atmos. Env., 67, 219-228, doi:10.1016/j.atmosenv.2012.11.001, 2013.
    • NASA ups the TEMPO on monitoring air pollution, E. Hilsenrath and K. Chance, The Earth Observer, 25 (2), 10-15,35, 2013. PDF
    • Dynamical and chemical features of a cutoff low over Northeast China in July 2007: Results from satellite measurements and reanalysis, C. Liu, Y. Liu, X. Liu, and K. Chance, Adv. Atmos. Sci., 30, 525-540, 2013. PDF
    • Evaluation of ozone profile and tropospheric ozone retrievals from GEMS and OMI spectra, J. Bak, J.H. Kim, X. Liu, K. Chance, and J. Kim, Atmos. Meas. Tech., 6, 239-249, 2013. http://www.atmos-meas-tech.net/6/239/2013.
    • IUPAC critical evaluation of the rotational-vibrational spectra of water vapor. Part II: Energy levels and transition wavenumbers for H216O, J. Tennyson, P.F. Bernath, L.R. Brown, A. Campargue, A.G. Császár, L. Daumont, R.R. Gamache, J.T. Hodges, O.V. Naumenko, O.L. Polyansky, L.S. Rothman, R.A. Toth, A.C. Vandaele, N.F. Zobov, A.R. Al Derzi, C. Fabri, A.Z. Fazliev, T. Furtenbacher, I.E. Gordon, L. Lodi, and I. Mizus, JQSRT, 117, 29-58, 2013. PDF

    2012

    • The United States' Next Generation Of Atmospheric Composition And Coastal Ecosystem Measurements: NASA's Geostationary Coastal and Air Pollution Events (GEO-CAPE) Mission, J. Fishman, L. T. Iraci, J. Al-Saadi, K. Chance, F. Chavez, M. Chin, P. Coble, C. Davis, P. M. DiGiacomo, D. Edwards, A. Eldering, J. Goes, J. Herman, C. Hu, D. J. Jacob, C. Jordan, S. R. Kawa, R. Key, X. Liu, S. Lohrenz, A. Mannino, V. Natraj, D. Neil, J. Neu, M. Newchurch, K. Pickering, J. Salisbury, H. Sosik, A. Subramaniam, M. Tzortziou, J. Wang, and M. Wang, Bull. Am. Meteorol. Soc., 93, 1547-1566, doi: http://dx.doi.org/10.1175/BAMS-D-11-00201.1, 2012.
    • Sensitivity analysis of ozone retrievals from ultraviolet measurements on geostationary platforms, J. Bak, J.H. Kim, R. Spurr, X. Liu, and M.J. Newchurch, Remote Sensing of Environment, http://dx.doi.org/10.1016/j.rse.2011.11.010, 2012.
    • Characteristics of tropospheric ozone depletion events in the Arctic spring: analysis of the ARCTAS, ARCPAC, and ARCIONS measurements and satellite BrO observations, J.-H. Koo, Y. Wang, T.P. Kurosu, K. Chance, A. Rozanov, A. Richter, S.J. Oltmans, A.M. Thompson, J.W. Hair, M.A. Fenn, A.J. Weinheimer, T.B. Ryerson, S. Solberg, L.G. Huey, J. Liao, J.E. Dibb, J.A. Neuman, J.B. Nowak, R.B. Pierce, M. Natarajan, and J. Al-Saadi, Atmos. Chem. Phys., 12, 9909-9922, doi:10.5194/acp-12-9909-2012, 2012.
    • New section of the HITRAN database: Collision-induced absorption (CIA), C. Richard, I.E. Gordon, L.S. Rothman, M. Abel, L. Frommhold, M. Gustafsson, J.-M. Hartmann, C. Hermans, W.J. Lafferty, G. Orton, K.M. Smith, and H. Tran, JQSRT, 113, 1276-1285, 2012. PDF
    • Impact of very short-lived halogens on stratospheric ozone abundance and UV radiation in a geo-engineered atmosphere, S. Tilmes, D.E. Kinnison, R.R. Garcia, R. Salawitch, T. Canty, J. Lee-Taylor, S. Madronich, and K. Chance, Atmos. Chem. Phys., 12, 10,945-10,955, doi:10.5194/acp-12-10945-2012, 2012. http://www.atmos-chem-phys.net/12/10945/2012/acp-12-10945-2012.html
    • The formaldehyde budget as seen by a global-scale multi-constraint and multi-species inversion system, A. Fortems-Cheiney, F. Chevallier, I. Pison, P. Bousquet, M. Saunois, S. Szopa, C. Cressot, T.P. Kurosu, K. Chance, and A. Fried, Atmos. Chem. Phys., 12, 6699-6721, 2012. http://www.atmos-chem-phys.net/12/6699/2012/acp-12-6699-2012.html
    • Sensitivity analysis of ozone retrievals from ultraviolet measurements on geostationary platforms, J. Bak, J.H. Kim, R. Spurr, X. Liu, and M.J. Newchurch, Rem. Sens. Env., 118, 309-319, 2012. http://dx.doi.org/10.1016/j.rse.2011.11.010
    • Characterization and correction of Global Ozone Monitoring Experiment 2 ultraviolet measurements and application to ozone profile retrievals, Z. Cai, Y. Liu, X. Liu, K. Chance, C.R. Nowlan, R. Lang, R. Munro, and R. Suleiman, J. Geophys. Res., 117, D07305, doi:10.1029/2011JD017096, 2012. PDF
    • PCW/PHEOS UV-Vis spectrometer: Air quality from a quasi-geostationary orbit, C.T. McElroy, J.C. McConnell, C.E. Sioris, P. Rahnama, and the PHEOS Science Team, Proc. ESA ATMOS-2012. PDF
    • PCW/PHEOS-WCA: Quasi-geostationary viewing of the Arctic and environs for weather, climate and air quality, J.C. McConnell, C.T.McElroy, C. Sioris, N. O'Neill, R. Nassar, H. Buijs, P. Rahnama, K. Walker, R. Martin, L. Garand, A. Trichtchenko, M. Bergeron, and the PHEOS Science Team, Proc. ESA ATMOS-2012. PDF
    • Isoprene emissions in Africa inferred from OMI observations of formaldehyde columns, E.A. Marais, D.J. Jacob, T.P. Kurosu, K. Chance, J.G. Murphy, C. Reeves, G. Mills, S. Casadio, D.B. Millet, M.P. Barkley, F. Paulot, and J. Mao, Atmos. Chem. Phys., 12, 6219-6235, 2012.
    • The formaldehyde budget as seen by a global-scale multi-constraint and multi-species inversion system, A. Fortems-Cheiney, F. Chevallier, I. Pison, P. Bousquet, M. Saunois, S. Szopa, C. Cressot, T.P. Kurosu, K. Chance, and A. Fried, Atmos. Chem. Phys., 12, 6699-6721, 2012.
    • Assessing sources of uncertainty in formaldehyde air-mass factors over tropical South America: implications for top-down isoprene emission estimates, M.P. Barkley, T.P. Kurosu, K. Chance, I. De Smedt, M. Van Roozendael, A. Arneth, D. Hagberg, and A. Guenther, J. Geophys. Res., 117, doi:10.1029/2011JD016827, 2012.
    • Enhanced mid-latitude tropospheric column ozone over East Asia: Coupled effects of stratospheric ozone intrusion and anthropogenic sources, A. Nakatani, S. Kondo, S. Hayashida, T. Nagashima, K. Sudo, X. Liu, K. Chance, and I. Hirota, J. Met. Soc. Japan, 90, 202-222, doi:10.2151/jmsj.2012-204, 2012. PDF
    • The National Global Change Research Plan: 2012-2021, Advance Science Writing Team. Download
    • Monitoring air quality from space:The case for the geostationary platform, W.A. Lahoz, V.-H. Peuch, J. Orphal, J.-L. Attie, K. Chance, X. Liu, D. Edwards, H. Elbern, J.-M. Flaud, M. Claeyman, and L. El Amraoui, Bull. Am. Met. Soc., 93, 221-233, doi:10.1175/BAMS-D-11-00045.1, 2012. PDF
    • Characterization of soluble bromide measurements and a case study of BrO observations during ARCTAS, J. Liao, L.G. Huey, E. Scheuer, J.E. Dibb, R.E. Sticke, D.J. Tanner, J.A. Neuman, J.B. Nowak, S. Choi, Y.Wang, R.J. Salawitch, T. Canty, K. Chance, T. Kurosu, R. Suleiman, A.J. Weinheimer, R.E. Shetter, A. Fried, W. Brune, B. Anderson, X. Zhang, G. Chen, J. Crawford, A. Hecobian, and E. D. Ingall, Atmos. Chem. Phys., 12, 1327-1338, 2012. PDF
    • Analysis of satellite-derived Arctic tropospheric BrO columns in conjunction with aircraft measurements during ARCTAS and ARCPAC, S. Choi, Y. Wang, R.J. Salawitch, T. Canty, J. Joiner, T. Zeng, T.P. Kurosu, K. Chance, A. Richter, L.G. Huey, J. Liao, J.A. Neuman, J. B. Nowak, J.E. Dibb, A.J. Weinheimer, G. Diskin, T.B. Ryerson, A. da Silva, J. Curry, D. Kinnison, S. Tilmes, and P.F. Levelt, Atmos. Chem. Phys., 12, 1255-1285, 2012. PDF

    2011

    • Relationships between low ozone and the longitudinal oscillation of the South Asia High over the Tibetan Plateau in summer, S. Su, J.H. He, Y. Liu, Y. Wang, Z. Cai, and X. Liu, Climatic and Environmental Research, 16(1), 2011.
    • Utilization of satellite observation of ozone and aerosols in providing initial and boundary condition for regional air quality studies, A.P. Biazar, M. Khan, L. Wang, Y.H. Park, M.J. Newchurch, D. McNider, X. Liu, D. Byun, and R. Cameron, J. Geophys. Res, D18309, doi:10.1029/2010JD015200, 2011.
    • Evaluating AURA/OMI ozone profile retrievals using ozonesonde data and EPA surface measurements for August 2006, L. Wang, M.J. Newchurch, A.P. Biazoor, X. Liu, S. Kuang, and M. Khan, Atmos. Environ., 45, 5523-5530, 2011.
    • Total internal partition sums to support planetary remote sensing, A.L. Laraia, R.R. Gamache, J. Lamouroux, I.E. Gordon, and L.S. Rothman, Icarus, 215, 391-400, 2011. PDF
    • The impact of local surface changes in Borneo on atmospheric composition at wider spatial scales: coastal processes, land-use change and air quality, J.A. Pyle, N.J. Warwick, N.R.P. Harris, et al., Phil. Trans. R. Soc. B, 366, 3210-3224, doi:10.1098/rstb.2011.0060, 2011.
    • Revision of spectral parameters for the B- and γ-bands of oxygen and their validation against atmospheric spectra, I.E. Gordon, L.S. Rothman, and G.C. Toon, JQSRT, 112, 2310-2322, 2011. PDF
    • Tropospheric ozone column retrieval at northern mid-latitudes from the Ozone Monitoring Instrument by means of a neural network algorithm, P. Sellitto, B.R. Bojkov, X. Liu, K. Chance, and F. Del Frate, Atmos. Meas. Tech., 4, 2375-2388, 2011. PDF
    • Multispectral sensitivity studies for the retrieval of tropospheric and lowermost tropospheric ozone from simulated clear sky GEO-CAPE measurements, V. Natraj, X. Liu, S. Kulawik, K. Chance, R. Chatfield, D.P. Edwards, A. Eldering, G. Francis, T. Kurosu, K. Pickering, R. Spurr, and H. Worden, Atmospheric Environment, 45, 7151-7165, 2011. PDF
    • Ozone air quality measurement requirements for a geostationary satellite mission, P. Zoogman, D.J. Jacob, K. Chance, L. Zhang, P. Le Sager, A.M. Fiore, A. Eldering, X. Liu, V. Natraj, and S.S. Kulawik, Atmospheric Environment 45, 7143-7150, 2011. PDF
    • Evaluating AURA/OMI ozone profiles using ozonesonde data and EPA surface measurements for August 2006, L. Wang, M.J. Newchurch, A. Biazar, X. Liu, S. Kuang, M. Khan, and K. Chance, Atmos. Env., 45, 5523-5530, 2011.
    • Retrievals of sulfur dioxide from GOME-2 using an optimal estimation approach: Algorithm and initial validation, C.R. Nowlan, X. Liu, K. Chance, Z. Cai, T.P. Kurosu, C. Lee, and R.V. Martin, J. Geophys. Res., 116, D18301, doi:10.1029/2011JD015808, 2011. PDF
    • Evaluation of satellite-derived HCHO using statistical methods, J.H. Kim, S.M. Kim, K.H. Baek, L. Wang, T. Kurosu, I. de Smedt, K. Chance, and M.J. Newchurch, Atmos. Chem. Phys. Disc., 11, 8003-8025, 2011.
    • Can a "state of the art" chemistry transport model simulate Amazonian tropospheric chemistry? M.P. Barkley et al., J. Geophys. Res., 116, D16302, doi:10.1029/2011JD015893, 2011. PDF
    • The band of 16O17O, 17O18O and 17O2 by high sensitivity CRDS near 1.27 μm, O. Leshchishina, S. Kassi, I.E. Gordon, S.Yu, and A. Campargue, JQSRT, 112, 1257-1265, 2011. PDF
    • Hyperfine structure of the a1Δg - X3Σg- - transitions of 16O17O, 17O18O and 17O2 by CRDS at 80K, S. Kassi, O. Leshchishina, I.E. Gordon, S.Yu, and A. Campargue, Chem. Phys. Lett., 502, 37-41, 2011. PDF
    • Direct fit of experimental ro-vibrational intensities to the dipole moment function: Application to HCl, G. Li, I.E. Gordon, P.F. Bernath, and L.S. Rothman, JQSRT 112, 1543-1550, doi:10.1016/j.jqsrt.2011.03.014, 2011. PDF
    • The unique OMI HCHO/NO2 feature during the 2008 Beijing Olympics: Implications for ozone production sensitivity, J.C. Witte, B.N. Duncan, A.R. Douglass, T.P. Kurosu, K. Chance, and C. Retscher, Atmospheric Environment, 45, 3103-3111, doi:10.1016/j.atmosenv.2011.03.015, 2011.
    • Formaldehyde columns from the Ozone Monitoring Instrument: Urban versus background levels and evaluation using aircraft data and a global model, N.L. Boeke, J.D. Marshall, S. Alvarez, K.V. Chance, A. Fried, T.P. Kurosu, B. Rappenglück, D. Richter, J. Walega, P. Weibring, and D.B. Millet, J. Geophys. Res., 116, doi:10.1029/2010JD014870, 2011.
    • A geostationary thermal infrared sensor to monitor the lowermost troposphere: O3 and CO retrieval studies, M. Claeyman, J.-L. Attié, V.-H. Peuch, L. El Amraoui, W.A. Lahoz, B. Josse, P. Ricaud, T. von Clarmann, M. Höpfner, J. Orphal, J.-M. Flaud, D.P. Edwards, K. Chance, X. Liu, F. Pasternak, and R. Cantié, Atmos. Meas. Tech., 4, 297-317, 2011. Download
    • From radiation fields to atmospheric concentrations - Retrieval of geophysical parameters, H. Bovensmann, A. Doicu, P. Stammes, M/ Van Roozendael, C. von Savigny, M. Penning de Vries, S. Beirle, T. Wanger, K. Chance, M. Buchwitz, A. Kokhanovsky, A. Richter, A.V. Rozanov, and V.V. Rozanov, in "SCIAMACHY - Exploring the Changing Earth's Atmosphere," eds. M. Gottwald and H. Bovensmann, ISBN:978-90-481-9895-5, doi:10.1007/978-90-481-9896-2, Springer, pp. 99-127, 2011.
    • Revised ultraviolet absorption cross sections of H2CO for the HITRAN database, K. Chance and J. Orphal, JQSRT, 112, 1509-1510, doi:10.1016/j.jqsrt.2011.02.002, 2011. PDF
    • Application of satellite observations for timely updates to global anthropogenic NOx emission inventories, L.N. Lamsal, R.V. Martin, A. Padmanabhan, A. van Donkelaar, Q. Zhang, C.E. Sioris, K. Chance, T.P. Kurosu, M.J. Newchurch, Geophys. Res. Lett., 38, L05810, doi:10.1029/2010GL046476, 2011. PDF
    • Global satellite analysis of the relation between aerosols and short-lived trace gases, J.P. Veefkind, K.F. Boersma, J. Wang, T. Kurosu, N. Krotkov, K. Chance, and P.F. Levelt, Atmos. Chem. Phys., 11, 1255-1267, doi:10.5194/acp-11-1255-2011, 2011. Download

    2010

    • Analysis and Applications of Satellite Remote Sensing Measurements by the Smithsonian Astrophysical Observatory, 2010. PDF
    • Direct retrieval of sulfur dioxide amount and altitude from spaceborne hyperspectral UV measurements: Theory and application, K. Yang, X. Liu, P.K. Bhartia, N.A. Krotkov, S.A. Carn, E.J. Hughes, A.J. Krueger, R.J.D. Spurr, and S.G. Trahan, J. Geophys. Res., 115, D00L09, doi:10.1029/2010JD013982, 2010.
    • Trans-pacific transport of reactive nitrogen and ozone to Canada during spring, T.W. Walker, R.V. Martin, A. van Donkelaar, W.R. Leaitch, A.M. MacDonald, K. Anlauf, R.C. Cohen, G. Huey, M. Avery, A. Weinheimer, F. Flocke, D. Tarasick, A. Thompson, D.G. Streets, and X. Liu, Atmos. Chem. Phys., 10, 8353-8372, doi:10.5194/acp-10-8353-2010, 2010.
    • High-resolution tropospheric ozone fields for INTEX and ARCTAS from IONS ozonesondes, D.W. Tarasick, J.J. Jin, V.E. Fioletov, G. Liu, A.M. Thompson, S.J. Oltmans, J. Liu, C.E. Sioris, X. Liu, O.R. Cooper, T. Dann, and V. Thouret, J. Geophys. Res., 115, D20301, doi:10.1029/2009JD012918, 2010.
    • Estimating European volatile organic compound emissions using satellite observations of formaldehyde from the Ozone Monitoring Instrument, G. Curci, P.I. Palmer, T.P. Kurosu, K. Chance, and G. Visconti, Atmos. Chem. Phys.,10, 11,501-11,517, 2010. PDF
    • A new interpretation of total column BrO during Arctic spring, R.J. Salawitch, T. Canty, T. Kurosu, K. Chance, et al., Geophys. Res. Lett., 37, L21805, doi:10.1029/2010GL043798, 2010. PDF
    • Intercomparison methods for satellite measurements of atmospheric composition: application to tropospheric ozone from TES and OMI, Zhang, L., D.J. Jacob, X. Liu, J.A. Logan, K. Chance, A. Eldering, and B.R. Bojkov, Atmos. Chem. Phys., 10, 4725-4739, 2010. PDF
    • Dynamic formation of extreme ozone minimum events over the Tibetan Plateau during northern winters 1987-2001, Liu, C., Y. Liu, Z. Cai, S. Gao, J. Bian, X. Liu, and K. Chance, J. Geophys. Res., 115, D18311, doi:10.1029/2009JD013130, 2010. PDF
    • Validation of Ozone Monitoring Instrument (OMI) ozone profiles and stratospheric ozone columns with Microwave Limb Sounder (MLS) measurements, X. Liu, P.K. Bhartia, K. Chance, L. Froidevaux, R.J.D. Spurr, and T.P. Kurosu, Atmos. Chem. Phys. 10, 2539-3549, 2010. PDF
    • Ozone profile retrievals from the Ozone Monitoring Instrument, X. Liu, P.K. Bhartia, K. Chance, R.J.D. Spurr, and T.P. Kurosu, Atmos. Chem. Phys. 10, 2521-2537, 2010. PDF
    • First identification of the a1Δg - X3Σg- - electronic quadrupole transitions of oxygen in solar and laboratory spectra, I.E. Gordon, S. Kassi, A. Campargue, and G.C. Toon, JQSRT, 111, 1174-1183, 2010. PDF
    • An improved high-resolution solar reference spectrum for Earth's atmosphere measurements in the ultraviolet, visible, and near infrared, K. Chance and R.L. Kurucz, JQSRT, 111, 1289-1295, 2010. PDF
    • Updated database plus software for line-mixing in CO2 infrared spectra and their test using laboratory spectra in the 1.5-2.3 μm region, Lamouroux, J., H. Tran, A.L. Laraia, R.R. Gamache, L.S Rothman, I.E. Gordon, and J.-M. Hartmann, JQSRT, 111, 2321-2331, doi:10.1016/j.jqsrt.2010.03.006, 2010. PDF
    • High sensitivity CRDS of the a1Δg - X3Σg- band of oxygen near 1.27 μm: Extended observations, quadrupole transitions, hot bands and minor isotopologues, Leshchishina, O., S. Kassi, I.E. Gordon, L.S. Rothman, L. Wang, and A. Campargue, JQSRT, 111, 2236-2245, doi:10.1016/j.jqsrt.2010.05.014, 2010. PDF
    • IUPAC Critical Evaluation of the Rotational-Vibrational Spectra of Water Vapor: Part II. Energy Levels and Transition Wavenumbers for HD16O, HD17O, HD18O, Tennyson, J., P.F. Bernath, L.R. Brown, A. Campargue, A.G. Császár, L. Daumont, R.R. Gamache, J.T. Hodges, O.V. Naumenko, O.L. Polyansky, L.S. Rothman, R.A. Toth, A.C. Vandaele, N.F. Zobov, S. Fally, A.Z. Fazliev, T. Furtenbacher, I.E. Gordon, S.-M. Hu, S.N. Mikhailenko, and B.A. Voronin, JQSRT, 111, 2160-2184, doi:10.1016/j.jqsrt.2010.06.012, 2010. PDF
    • Virtual Atomic and Molecular Data Centre, Dubernet, M.L., V. Boudon, J.L. Culhane, M.S. Dimitrijevic, A.Z. Fazliev, C. Joblin, F. Kupka, G. Leto, P. Le Sidaner, P.A. Loboda, H.E. Mason, N.J. Mason, C. Mendoza, G. Mulas, T.J. Millar, L. Nuńez, V.I. Perevalov, N. Piskunov, Y. Ralchenko, G. Rixon, L.S. Rothman, E. Roueff, T.A. Ryabchikova, A. Ryabtsev, S. Sahal-Bréchot, B. Schmitt, S. Schlemmer, J. Tennyson, V.L. Tyuterev, N.A. Walton, V. Wakelam, and C. Zeippen, JQSRT, 111, 2151-2159, doi:10.1016/j.jqsrt.2010.05.004, 2010. PDF
    • HITEMP, the High-Temperature Molecular Spectroscopic Database, Rothman, L.S., I.E. Gordon, R.J. Barber, H. Dothe, R.R. Gamache, A. Goldman, V. Perevalov, S.A. Tashkun, and J. Tennyson, JQSRT, 111, 2139-2150, doi:10.1016/j.jqsrt.2010.05.001, 2010. PDF

    2009

    • Estimating the altitude of volcanic sulfur dioxide plumes from space borne hyper-spectral UV measurements, K. Yang, X. Liu, N.A. Krotkov, A.J. Krueger, and S.A. Carn, Geophys. Res. Lett., 36, L10803, doi:10.1029/2009GL038025, 2009.
    • Evaluation of AIRS, IASI, and OMI ozone profile retrievals in the extratropical tropopause region using in situ aircraft measurements, Pittman, J.V., L.L. Pan, J.C. Wei, F.W. Irion, X. Liu, E.S. Maddy, C.D. Barnet, K. Chance, and R. Gao, J. Geophys. Res., 114, D24109, doi:10.1029/2009JD012493, 2009. PDF
    • Long-term tropospheric formaldehyde concentrations deduced from ground-based Fourier transform solar infrared measurements, N.B. Jones, K. Riedel, W. Allan, S. Wood, P.I. Palmer, K. Chance, and J. Notholt, Atmos. Chem. Phys. 9, 7131-7142, 2009. PDF
    • Validation of GOME ozone profiles and tropospheric column ozone with ozone sonde over China, Z. Cai, Y. Wang, X. Liu, X. Zheng, K. Chance, and Y. Liu, J. Appl. Meteor. Sci., 20, 337-345, 2009. PDF
    • The HITRAN 2008 molecular spectroscopic database, L.S. Rothman, I.E.Gordon, A. Barbe, D. Chris Benner, P.F. Bernath, M. Birk, V. Boudon, L.R. Brown, A. Campargue, J.-P. Champion, K. Chance, L.H. Coudert, V. Dana, V.M. Devi, S. Fally, J.-M. Flaud, R.R. Gamache, A. Goldman, D. Jacquemart, I. Kleiner, N. Lacome, W.J. Lafferty, J.-Y. Mandin, S.T. Massie, S.N. Mikhailenko, C.E. Miller, N. Moazzen-Ahmadi, O.V. Naumenko, A.V. Nikitin, J. Orphal, V.I. Perevalov, A. Perrin, A. Predoi-Cross, C.P. Rinsland, M. Rotger, M. Simeckova, M.A.H. Smith, K. Sung, S.A. Tashkun, J. Tennyson, R.A. Toth, A.C. Vandaele, and J. Vander Auwera, J. Quant. Spectrosc. Radiat. Transfer, 110, 533-572, 2009. PDF
    • Tibetan middle tropospheric ozone minimum in June discovered from GOME observations, Y. Liu, Y. Wang, X. Liu, Z. Cai, and K. Chance, Geophys. Res. Lett., 36, L05814, doi:10.1029/2008GL037056, 2009. PDF
    • IUPAC Critical Evaluation of the Rotational-Vibrational Spectra of Water Vapor. Part I. Energy Levels and Transition Wavenumbers for H217O, H218O, and HD16O, Tennyson, J., P.F. Bernath, L.R. Brown, A. Campargue, M.R. Carleer, A.G. Császár, R.R. Gamache, J.T. Hodges, A. Jenouvrier, O.V. Naumenko, O.L. Polyansky, L.S. Rothman, R.A. Toth, A.C. Vandaele, N.F. Zobov, L. Daumont, A.Z. Fazliev, T. Furtenbacher, I.E. Gordon, S.N. Mikhailenko, et al, JQSRT, 110, 573-596, doi:10.1016/j.jqsrt.2009.02.014, 2009. PDF

    2008

    • Oxygen, nitrogen and air broadening of HCN spectral lines at terahertz frequencies, C. Yang, J. Buldyreva, I.E. Gordon, F. Rohart, A. Cuisset, G. Mouret, R. Bocquet, and F. Hindle, J. Quant. Spectrosc. Radiat. Transfer, 109, 2857-2868, doi:10.1016/j.jqsrt.2008.08.005, 2008. PDF
    • Improved algorithm for MODIS satellite retrievals of aerosol optical depths over western North America, Drury E., D.J. Jacob, J. Wang, R.J.D. Spurr, and K. Chance, J. Geophys. Res., 113, D16204, doi:10.1029/2007JD009573, 2008. PDF
    • The GEISA spectroscopic database: Current and future archive for Earth and planetary atmosphere studies, N. Jacquinet-Husson, N.A. Scott, A. Chédin, et al., J. Quant. Spectrosc. Radiat. Transfer, 109, 1043-1059, doi:10.1016/j.jqsrt.2007.12.015, 2008. PDF
    • Net ecosystem fluxes of isoprene over tropical South America inferred from Global Ozone Monitoring Experiment (GOME) observations of HCHO columns, Barkley M.P., P.I. Palmer, U. Kuhn, J. Kesselmeier, K. Chance, T.P. Kurosu, R.V. Martin, D. Helmig, and A. Guenther, J. Geophys. Res., 113, D20304, doi:10.1029/2008JD009863, 2008. PDF
    • Springtime transitions of NO2, CO, and O3 over North America: Model evaluation and analysis, Choi Y., Y. Wang, T. Zeng, D. Cunnold, E.-S. Yang, R. Martin, K. Chance, V. Thouret, and E. Edgerton, J. Geophys. Res., 113, D20311, doi:10.1029/2007JD009632, 2008. PDF
    • Spatiotemporal Variation in Tropospheric Column Ozone over East Asia Observed by GOME and Ozonesondes, S. Hayashida, N. Urita, K. Noguchi, X. Liu, and K. Chance, Scientific Online Letters on the Atmosphere 4, 117-120, doi:10.2151/sola.2008-030, 2008. PDF
    • Remote sensing of tropospheric pollution from space, J. Fishman, K.W. Bowman, J.P. Burrows, A. Richter, K.V. Chance, D.P. Edwards, R.V. Martin, G.A. Morris, R.B. Pierce, J.R. Ziemke, J.A. Al-Saadi, J.K. Creilson, T.K. Schaack, and A.M. Thompson, Bull. Am. Met. Soc. 89(6), 805-821, 2008. PDF BAMS Cover
    • GEM-AQ, an on-line global multiscale chemical weather modelling system: model description and evaluation of gas phase chemistry processes, J.W. Kaminski, L. Neary, J. Struzewska, J.C. McConnell, A. Lupu, J. Jarosz, K. Toyota, S. L. Gong, J. Côté, X. Liu, K. Chance, and A. Richter, Atmos. Chem. Phys., 8, 3255-3281, 2008. PDF
    • Spatial distribution of isoprene emissions from North America derived from formaldehyde column measurements by the OMI satellite sensor, D.B. Millet, D.J. Jacob, K.F. Boersma, T. Fu, T.P. Kurosu, K. Chance, C L. Heald, and A. Guenther, J. Geophys. Res. 113, D02307, doi:10.1029/2007JD008950, 2008. PDF
    • Laser spectroscopic monitoring of gas emission and measurements of the 13C/12C isotope ratio in CO2 from a wood-based combustion, J. Cousina, W. Chen, M. Fourmentin, E. Fertein, D. Boucher, F. Cazier, H. Nouali, D. Dewaele, M. Douay, and L.S. Rothman, J. Quant. Spectrosc. Radiat. Transfer, 109, 151-167, doi:10.1016/j.jqsrt.2007.05.010, 2008. PDF

    2007

    • An ozone depletion event in the sub-arctic surface layer over Hudson Bay, Canada, B.A. Ridley, T. Zeng, Y. Wang, E.L. Atlas, E.V. Browell, P.G. Hess, J.J. Orlando, K. Chance, and A. Richter, J. Atmos. Chem. 57, 255-280, DOI 10.1007/s10874-007-9072-z, 2007. PDF
    • Geophysical validation of MIPAS-ENVISAT operational ozone data, U. Cortesi, J.C. Lambert, C. De Clercq, G. Bianchini, T. Blumenstock, A. Bracher, E. Castelli, V. Catoire, K.V. Chance, M. De Mazičre, P. Demoulin, S. Godin-Beekmann, N. Jones, K. Jucks, C. Keim, T. Kerzenmacher, H. Kuellmann, J. Kuttippurath, M. Iarlori, G.Y. Liu, Y. Liu, I.S. McDermid, Y.J. Meijer, F. Mencaraglia, S. Mikuteit, H. Oelhaf, C. Piccolo, M. Pirre, P. Raspollini, F. Ravegnani, W.J. Reburn, G. Redaelli, J.J. Remedios, H. Sembhi, D. Smale, T. Steck, A. Taddei, C. Varotsos, C. Vigouroux, A. Waterfall, G. Wetzel, and S. Wood, Atmos. Chem. Phys., 7, 4807-4867, 2007. PDF
    • Current updates of the water-vapor linelist in HITRAN: A new "Diet" for air-broadened half-widths, I.E. Gordon, L.S. Rothman, R.R.Gamache, D. Jacquemart, C. Boone, P.F. Bernath, M. Shephard, J.S. Delamere, and S.A. Clough, J. Quant. Spectrosc. Radiat. Transfer, 108, 389-402, doi:10.1016/j.jqsrt.2007.06.009, 2007. PDF
    • Impact of using different ozone cross sections on ozone profile retrievals from Global Ozone Monitoring Experiment (GOME) ultraviolet measurements, X. Liu, K. Chance, C.E. Sioris, and T.P. Kurosu, Atmos. Chem. Phys., 7, 3571-3578, 2007. PDF
    • First observations of iodine oxide from space, Saiz-Lopez, A., K.V. Chance, X. Liu, T.P. Kurosu, and S.P. Sander, Geophys. Res. Lett., 34, L12812, doi:10.1029/2007GL030111, 2007. PDF
    • Improved ozone profile retrievals from GOME data with degradation correction in reflectance, X. Liu, K. Chance, and T. Kurosu, Atmos. Chem. Phys. 7, 1575-1583, 2007. PDF
    • Validation and comparison of tropospheric column ozone derived from GOME measurements with ozonesondes over Japan, K. Noguchi, N. Urita, S. Hayashida, X. Liu, and K. Chance, Scientific Online Letters on the Atmosphere 3, 41-44, doi:10.2151/sola.2007-011, 2007. PDF
    • Interpreting satellite column observations of formaldehyde over tropical South America, P.I. Palmer, M.P. Barkley, T.P. Kurosu, A.C. Lewis, J.E. Saxton, K. Chance, and L.V. Gatti, Phil. Trans. R. Soc. A, 365, 1741-1751, 2007.
    • Remote sensed and in situ constraints on processes affecting tropical tropospheric ozone, B. Sauvage, R.V. Martin, A. van Donkelaar, X. Liu, K. Chance, L. Jaeglé, P.I. Palmer, S. Wu, and T.-M. Fu, Atmos. Chem. Phys. 7, 815-838, 2007. PDF
    • Validation of MIPAS ClONO2 measurements, M. Höpfner, T. von Clarmann, H. Fischer, B. Funke, N. Glatthor, U. Grabowski, S. Kellmann, M. Kiefer, A. Linden, M. Milz, T. Steck, G.P. Stiller, P. Bernath, C.E. Blom, Th. Blumenstock, C. Boone, K. Chance, M.T. Coffey, F. Friedl-Vallon, D. Griffith, J.W. Hannigan, F. Hase, N. Jones, K.W. Jucks, C. Keim, A. Kleinert, W. Kouker, G.Y. Liu, E. Mahieu, J. Mellqvist, S. Mikuteit, J. Notholt, H. Oelhaf, C. Piesch, T. Reddmann, R. Ruhnke, M. Schneider, A. Strandberg, G. Toon, K.A. Walker, T. Warneke, G. Wetzel, S. Wood, and R. Zander, Atmos. Chem. Phys. 7, 257-281, 2007.
    • Improved tropospheric ozone profile retrievals using OMI and TES radiances, J. Worden, X. Liu, K. Bowman, K. Chance, R. Beer, A. Eldering, M. Gunson, and H. Worden, Geophys. Res. Lett. 34, L01809, doi:10.1029/2006GL027806, 2007. PDF
    • Space-based formaldehyde measurements as constraints on volatile organic compound emissions in East and South Asia, and implications for ozone, T-M. Fu, D.J. Jacob, P.I. Palmer, K. Chance, Y.X. Wang, B. Barletta, D.R. Blake, J.C. Stanton, and M.J. Pilling, J. Geophys. Res. 112, D06312, doi:10.1029/2006JD007853, 2007. PDF

    2006

    • Einstein A-coefficients and statistical weights for molecular absorption transitions in the HITRAN database, M. Ŝimeĉková, D. Jacquemart, L.S. Rothman, R.R. Gamache, and A. Goldman, J. Quant. Spectrosc. Radiat. Transfer, 98, 130-155, 2006. PDF
    • SCIAMACHY Level 1 data: calibration concept and in-flight calibration, G. Lichtenberg, Q. Kleipool, J. M. Krijger, G. van Soest, R. van Hees, L. G. Tilstra, J. R. Acarreta, I. Aben, B. Ahlers, H. Bovensmann, K. Chance, A. M. S. Gloudemans, R. W. M. Hoogeveen, R. T. N. Jongma, S. Noël, A. Piters, H. Schrijver, C. Schrijvers, C. E. Sioris, J. Skupin, S. Slijkhuis, P. Stammes, and M. Wuttke, Atmos. Chem. Phys., 6, 5347-5367, 2006 PDF
    • Spectroscopic Measurements of Tropospheric Composition from Satellite Measurements in the Ultraviolet and Visible: Steps Toward Continuous Pollution Monitoring from Space, K. Chance, in ``Remote Sensing of the Atmosphere for Environmental Security,'' eds. A. Perrin, N. Ben Sari-Zizi, and J. Demaison, NATO Security through Science Series, ISBN: 1-4020-5089-5, Springer, pp. 1-25, 2006. First glyoxal measurements from space. Draft PDF
    • Intercomparison of GOME, ozonesonde, and SAGE II measurements of ozone: Demonstration of the need to homogenize available ozonesonde data sets, X. Liu, K. Chance, C.E. Sioris, T.P. Kurosu, and M.J. Newchurch, J. Geophys. Res. 111 (D14) D14305, doi:10.1029/2005JD006718, 2006. PDF
    • Latitudinal and vertical distribution of bromine monoxide in the lower stratosphere from Scanning Imaging Absorption Spectrometer for Atmospheric Chartography limb scattering measurements, C.E. Sioris, L.J. Kovalenko, C.A. McLinden, R.J. Salawitch, M. van Roozendael, F. Goutail, M. Dorf, K. Pfeilsticker, K. Chance, C. von Savigny, X. Liu, T.P. Kurosu, J.-P. Pommereau, H. Boesch, and J. Frerick, J. Geophys. Res. 111 (D14), D14301, doi:10.1029/2005JD006479, 2006. PDF
    • Quantifying the seasonal and interannual variability of North American isoprene emissions using satellite observations of the formaldehyde column, P.I. Palmer, D.S. Abbot, T-M. Fu, D.J. Jacob, K. Chance, T.P. Kurosu, A. Guenther, C. Wiedinmyer, J.C. Stanton, M.J. Pilling, S.N. Pressley, B. Lamb, and A.L. Sumner, J. Geophys. Res. 111, D12315, doi:10.1029/2005JD006689, 2006. PDF
    • Evaluation of GOME ozone profiles from nine different algorithms, Y.J. Meijer, D.P. J. Swart,1 F. Baier, P.K. Bhartia, G.E. Bodeker, S. Casadio, K. Chance, F. Del Frate, T. Erbertseder, L.E. Flynn, S. Godin-Beekmann, G. Hansen, O.P. Hasekamp, A. Kaifel, H.M. Kelder,2, B.J. Kerridge, J.-C. Lambert, J. Landgraf, B. Latter, X. Liu, I.S. McDermid, M.D. Müller, Y. Pachepsky, V. Rozanov, R. Siddans, S. Tellmann, R.J. van der A, R.F. van Oss, M. Weber, and C. Zehner, J. Geophys. Res., 111, D21306, doi:10.1029/2005JD006778, 2006. PDF
    • Halogen-driven low altitude O3 and hydrocarbon losses in spring at northern high latitudes, T. Zeng, Y. Wang, K. Chance, N. Blake, D. Blake, and B. Ridley, J. Geophys, Res., 111, D17313, doi:10.1029/2005JD006706, 2006. PDF
    • Evaluation of space-based constraints on global nitrogen oxide emissions with regional aircraft measurements over and downwind of eastern North America, R.V. Martin, C.E. Sioris, K. Chance, T.B. Ryerson, T.H. Bertram, P.J. Woolridge, R.C. Cohen, J.A. Neuman, A. Swanson, and F.M. Flocke, J. Geophys. Res., 111, D15308, doi:10.1029/2005JD006680, 2006. PDF
    • Tropospheric ozone profiles from a ground-based ultraviolet spectrometer: A new retrieval method, X. Liu, K. Chance, C.E. Sioris, M.J. Newchurch, and T.P. Kurosu, Appl. Opt., 45(10), 2352-2359, 2006. PDF
    • First directly-retrieved global distribution of tropospheric column ozone from GOME: Comparison with the GEOS-CHEM model, X. Liu, K. Chance, C.E. Sioris, T.P. Kurosu, R.J.D. Spurr, R.V. Martin, T.-M. Fu, J.A. Logan, D.J. Jacob, P.I. Palmer, M.J. Newchurch, I.A. Megretskaia, and R.B. Chatfield, J. Geophys. Res. 111, D02308, doi:10.1029/2005JD006564, 2006. PDF
    • Correction to "First directly-retrieved global distribution of tropospheric column ozone from GOME: Comparison with the GEOS-CHEM model," X. Liu, K. Chance, C.E. Sioris, T.P. Kurosu, R.J.D. Spurr, R.V. Martin, T.-M. Fu, J.A. Logan, D.J. Jacob, P.I. Palmer, M.J. Newchurch, I.A. Megretskaia, and R.B. Chatfield, J. Geophys. Res., 111, D10399, doi:10.1029/2006JD007374, 2006.
    • Applications of Atomic and Molecular Physics to Global Change, K. Kirby and K. Chance, in "the Springer Handbook of Atomic, Molecular and Optical Physics," Ed. G.W.F. Drake, 2nd edition, ISBN:0-387-20802-X, 2006.

    2005

    • Constraining global isoprene emissions with GOME HCHO column measurements, C. Shim, Y. Wang, Y. Choi, P.I. Palmer, D.S. Abbot, and K. Chance, J. Geophys. Res. 110, D24301, doi:10.1029/2004JD005629, 2005. PDF
    • Ozone profile and tropospheric ozone retrievals from Global Ozone Monitoring Experiment: Algorithm description and validation, Liu, X., K. Chance, C.E. Sioris, R.J.D. Spurr, T.P. Kurosu, R.V. Martin, and M.J. Newchurch, J. Geophys. Res. 110, D20307, doi:10.1029/2005JD006240. PDF
    • History and future of the molecular spectroscopic databases, L.S. Rothman, N. Jacquinet-Husson, C. Boulet, A.M. Perrin, Comptes Rendus - Physique, 6, 897-907, doi:10.1016/j.crhy.2005.09.001, 2005. PDF
    • Ultraviolet and visible spectroscopy and spaceborne remote sensing of the Earth's atmosphere, K. Chance, Comp. Rend. Phys. Special issue on ``Molecular Spectroscopy and Planetary Atmospheres,'' 6, 836-847. PDF
    • Global partitioning of NOx sources using satellite observations: Relative roles of fossil fuel combustion, biomass burning and soil emissions, Jaeglé, L., L. Steinberger, R.V. Martin, and K. Chance, Faraday Discuss., 130, 407-423, DOI: 10.1039/b502128f, 2005. PDF
    • Mapping tropospheric ozone profiles from an airborne ultraviolet/visible spectrometer, X. Liu, C.E. Sioris, K. Chance, T.P. Kurosu, M.J. Newchurch, R.V. Martin, and P.I. Palmer, Applied Optics 44, 3312-3319. PDF
    • Undersampling correction for array-detector based satellite spectrometers, K. Chance, T.P. Kurosu, and C.E. Sioris, Applied Optics 44(7), 1296-1304, 2005. PDF
    • Sensitivity of ozone to bromine in the lower stratosphere, R.J. Salawitch, D.K. Weinstein, L.J. Kovalenko, C.E. Sioris, P.O. Wennberg, K. Chance, M.K.W. Ko, and C.A. McLinden, Geophys. Res. Lett. 32, No. 5, L05811, doi:10.1029/2004GL021504. PDF
    • Evidence of lightning NOx and convective transport of pollutants in satellite observations over North America, Y. Choi, Y. Wang, T. Zeng, R.V. Martin, T.P. Kurosu, and K. Chance, Geophys. Res. Lett., 32, L02805, doi:10.1029/2004GL021436. PDF
    • Semi-empirical calculation of air-broadened halfwidths and air pressure-induced frequency shifts of water-vapor absorption lines, D. Jacquemart, R.R. Gamache, and L.S. Rothman, J. Quant. Spectrosc. Radiat. Transfer 96, 205-239, 2005. PDF
    • The HITRAN 2004 molecular spectroscopic database, L.S. Rothman, D. Jacquemart, A. Barbe, D.Chris Benner, M. Birk, L.R. Brown, M.R. Carleer, C. Chackerian, Jr, K. Chance, L.H. Coudert, V. Dana, V.M. Devi, J.-M. Flaud, R.R. Gamache, A. Goldman, J.-M. Hartmann, K.W. Jucks, A.G. Maki, J.-Y. Mandin, S.T. Massie, J. Orphal, A. Perrin, C.P. Rinsland, M.A.H. Smith, J. Tennyson, R.N. Tolchenov, R.A. Toth, J. Vander Auwera, P. Varanasi, and G. Wagner, J. Quant. Spectrosc. Radiat. Transfer 96, 139-204, 2005. PDF

    2004

    • Errors resulting from assuming opaque Lambertian cloud surfaces in TOMS ozone retrieval, X. Liu, M.J. Newchurch, R. Loughman, and P.K. Bhartia, J. Quant. Spectrosc. Radiat. Transfer, 85, 337-365, 2004.
    • Ozone profiles and tropospheric ozone from the Global Ozone Monitoring Experiment, X. Liu, K. Chance, C.E. Sioris, R.J.D. Spurr, T.P. Kurosu, R.V. Martin, M.J. Newchurch, and P.K. Bhartia, Proc. 2004 Envisat Symposium. PDF
    • Satellite mapping of rain-induced nitric oxide emissions from soils, Jaegle, L., R.V. Martin, K. Chance, L. Steinberger, T.P. Kurosu, D.J. Jacob, A.I. Modi, V. Yoboue, L. Sigha-Nkamdjou, and C. Galy-Lacaux, J. Geophys. Res., 109, D21310, doi:10.1029/2004JD004787. PDF
    • Stratospheric and tropospheric NO2 observed by SCIAMACHY: First results, C.E. Sioris, T.P. Kurosu, R.V. Martin and K. Chance, Advances in Space Research Special issue: Trace Constituents in the Troposphere and Lower Stratosphere, Vol 34/4, 780-785, 2004. PDF
    • Effects of the physical state of tropospheric ammonium-sulfate nitrate particles on global aerosol direct radiative forcing, Martin, S.T., H.M. Hung, R.J. Park, D.J. Jacob, R.J.D. Spurr, K.V. Chance, and M. Chin, Atmos. Chem. Phys. 4, 183-214, 2004. PDF
    • Evaluation of GOME satellite measurements of tropospheric NO2 and HCHO using regional data from aircraft campaigns in the southeastern United States, R.V. Martin, D.D. Parrish, T.B. Ryerson, D.K. Nicks Jr., K. Chance, T.P. Kurosu, A. Fried, B.P. Wert, D.J. Jacob, and E.D. Sturges, J. Geophys. Res. 109, D24307, doi:10.1029/2004JD004869, 2004. PDF
    • Preliminary results for HCHO and BrO from the EOS-Aura Ozone Monitoring Instrument, T.P. Kurosu, K. Chance, and C.E. Sioris, in Passive Optical Remote Sensing of the Atmosphere and Clouds IV, eds. S.C. Tsay, T. Yokota, and M.-H. Ahn, Proc. of SPIE Vol. 5652 (SPIE, Bellingham, WA), 106-109, 2004.
    • Satellite-based spectroscopic measurements of tropospheric pollution, K. Chance, T. Kurosu, R. Spurr, C. Sioris, X. Liu, D. Jacob, P. Palmer, D. Abbot, R. Martin, L. Jaeglé, Y. Wang, and T. Zeng, Invited presentation to COSPAR, 2004.
    • Ozone profile retrieval from GOME, Chance, K., X. Liu, C.E. Sioris, R.J.D. Spurr, T.P. Kurosu, R.V. Martin, M.J. Newchurch, and P.K. Bhartia, Quadrennial Ozone Symposium, 2004.

    2003

    • Shortwave direct radiative forcing of dust aerosols over the Atlantic Ocean, X. Liu, J. Wang, and S.A. Christopher, Int. J. Rem. Sensing, 24, 5147-5160, 2003.
    • Occurrence of ozone anomalies over cloudy areas in TOMS data, X. Liu, M.J. Newchurch, and J.H. Kim, Atmos. Chem. and Phys., 3, 1113-1129, 2003.
    • The Effect of Non-Sphericity on GOES-8 Dust Aerosol Retrievals during PRIDE, J. Wang, X. Liu, S.A. Christopher, J.S. Reid, E. Reid, and H. Maring, Geophys. Res. Lett., 30(24), 229310.1029/2003GL018697, 2003.
    • Tropical tropospheric ozone derived using Clear-Cloudy Pairs (CCP) of TOMS measurements, M.J. Newchurch, D. Sun, J.H. Kim, and X. Liu, Atmos. Chem. and Phys., 3, 683-695, 2003.
    • Total internal partition sums for molecular species in the 2000 edition of the HITRAN database, J. Fischer, R.R. Gamache, A. Goldman, L.S. Rothman, and A. Perrin, J. Quantit. Spectrosc. Radiat. Transfer, 82, 401-412, doi:10.1016/S0022-4073(03)00166-3, 2003. PDF
    • Widespread persistent near-surface O3 depletion at northern high latitudes in spring, T. Zeng, Y. Wang, K. Chance, E.V. Browell, B.A. Ridley, and E.L. Atlas, Geophys. Res. Lett., 30(24), 2298, doi:10.1029/2003GL018587, 2003. PDF
    • Seasonal and interannual variability of North American isoprene emissions as determined by formaldehyde column emissions from space, D.S. Abbot, P.I. Palmer, R.V. Martin, K. Chance, D.J. Jacob, and A. Guenther, Geophys. Res. Lett. 30(17), 1886, doi:10.1029/2003GL017336, 2003. PDF
    • Global inventory of nitrogen oxide emissions constrained by space-based observations of NO2 columns, R.V. Martin, D.J. Jacob, K. Chance, T. Kurosu, P.I. Palmer, and M.J. Evans, J. Geophys. Res. 108,(D17), 4537, doi:10.1029/2003JD003453, 2003. PDF
    • Mapping isoprene emissions over North America using formaldehyde column observations from space, P.I. Palmer, D.J. Jacob, A.M. Fiore, R.V. Martin, K. Chance, and T. Kurosu, J. Geophys. Res. 108, 4180, doi:10.1029/2002JD002153, 2003. PDF
    • An overview of the nadir sensor and algorithms for the NPOESS Ozone Mapping and Profiler Suite (OMPS), J.V. Rodriguez, C.J. Seftor, C.G. Wellemeyer, and K. Chance, Proc. S.P.I.E., Optical Remote Sensing of the Atmosphere and Clouds III, 4891, 65-75, 2003. PDF
    • Stratospheric profiles of nitrogen dioxide observed by Optical Spectrograph and Infrared Imager System on the Odin Satellite, C.E. Sioris, C.S. Haley, C.A. McLinden, C. von Savigny, I.C. McDade, W.F.J. Evans, J.C. McConnell, N.D. Lloyd, E.J. Llewellyn, D. Murtagh, U. Frisk, T.P. Kurosu, K.V. Chance, K. Pfeilsticker, H. Boesch, and F. Weidner, J. Geophys. Res. 108, No. D7, 4215, doi:10.1029/2002JD002672, 2003. PDF
    • Ultraviolet and visible absorption cross sections for HITRAN, J. Orphal and K. Chance, Journal of Quantitative Spectroscopy and Radiative Transfer 82, 491-504, 2003. PDF
    • A new approach to the retrieval of surface properties from earthshine measurements, R.J.D. Spurr, J. Quant. Spectrosc. Radiat. Transfer, 83, 15-46, 2003. PDF
    • LIDORT V2PLUS: A comprehensive radiative transfer package for UV/VIS/NIR nadir remote sensing; A general quasi analytic solution, R.J.D. Spurr, Proc. S.P.I.E. Volume 5235, Remote Sensing of Clouds and the Atmosphere VIII, Barcelona, Spain, 2003.
    • The HITRAN molecular spectroscopic database: Edition of 2000 including updates Through 2001, L.S. Rothman, A. Barbe, D.C. Benner, L.R. Brown, C. Camy-Peyret, M.R. Carleer, K. Chance, C. Clerbaux, V. Dana, V.M. Devi, A. Fayt, J.-M. Flaud, R.R. Gamache, A. Goldman, D. Jacquemart, K.W. Jucks, W.J. Lafferty, J.-Y. Mandin, S.T. Massie, V. Nemtchinov, D.A. Newnham, A. Perrin, C.P. Rinsland, J. Schroeder, K.M. Smith, M.A.H. Smith, K. Tang, R.A. Toth, J. Vander Auwera, P. Varanasi, and K. Yoshino, J. Quant. Spectrosc. Radiat. Transfer 82, 5-44, 2003. PDF
    • Spectroscopic parameters for ozone and its isotopes: Recent measurements, outstanding issues, and prospects for improvements to HITRAN, C.P. Rinsland, J.-M. Flaud, A. Perrin, M. Birk, G. Wagner, A. Goldman, A. Barbe, M.-R. De Backer-Barilly, S.N Mikhailenko, Vl.G. Tyuterev, M.A.H. Smith, V.M. Devi, D.C. Benner, F. Schreier, K.V. Chance, J. Orphal, and T. M. Stephen, J. Quant. Spectrosc. Radiat. Transfer 82, 207-218, 2003. PDF
    • The spectrum of acetylene in the 5-µm region from new line parameter measurements, D. Jacquemart, J.-Y. Mandin, V. Dana, L. Régalia-Jarlot, J.-J. Plateaux, D. Décatoire, and L.S. Rothman, J. Quant. Spectrosc. Radiat. Transfer 76, 237-267, 2003. PDF
    • The 1-µm CO2 bands and the O2 (0-1) X3Σg- - a1Δg and (1-0) X3Σg- - b1Σg+ bands in the Earth atmosphere, A. Goldman, T.M. Stephen, L.S. Rothman, L.P. Giver, J.-Y. Mandin, R.R. Gamache, C.P. Rinsland, and F.J. Murcray, J. Quant. Spectrosc. Radiat. Transfer 82, 197-205, 2003. PDF
    • The IR acetylene spectrum in HITRAN: update and new results, D. Jacquemart, J.-Y. Mandin, V. Dana, C. Claveau, J. Vander Auwera, L.S. Rothman, L. Régalia-Jarlot, and A. Barbe, J. Quant. Spectrosc. Radiat. Transfer 82, 363-382, 2003. PDF
    • HBr and HI line parameters update for atmospheric spectroscopy databases, A. Goldman, M.T. Coffey, J.W. Hannigan, W.G. Mankin, K.V. Chance, and C.P. Rinsland, JQSRT, 82, 313-317, 2003.
    • Pressure broadening of the lowest rotational transition of H35Cl by N2 and O2, L. Zu, P.A. Hamilton, K.V. Chance, and P.B. Davies, J. Mol. Spec., 220, 107-112, 2003.

    2002

    • OMI Algorithm Theoretical Basis Document, Volume IV, OMI Trace Gas Algorithms (K. Chance ed.), ATBD-OMI-04, Version 2.0, August 2002. PDF
    • Validation of ILAS v5.2 Data with FIRS-2 balloon observations, K.W. Jucks, D.G. Johnson, K.V. Chance, W.A. Traub, J.M. Margitan, R. Stachnik, Y. Sasano, T. Yokota, H. Kanzawa, K. Shibasaki, M. Suzuki, and T. Ogawa, J. Geophys. Res. 107, No. D24, 8207, doi:10.1029/2001JD000578, 2002.
    • Atmospheric ultraviolet spectroscopy, K. Chance and L.S. Rothman. in ``Ultraviolet Spectroscopy and UV Lasers,'' eds. P. Misra and M.A. Dubinskii, ISBN: 0-8247-0668-4, Marcel Dekker, NY, pp. 475-497, 2002.
    • Tropospheric chemistry measurements from the GOME and SCIAMACHY instruments, K. Chance, T. Kurosu, R. Spurr, C. Sioris, R. Martin, P. Palmer, A. Fiore, and D. Jacob, Proc. S.P.I.E., Remote Sensing of Clouds and the Atmosphere VII, 4882, paper 43, 2002.
    • An improved retrieval of tropospheric nitrogen dioxide from GOME, R.V. Martin, K. Chance, D.J. Jacob, T.P. Kurosu, R.J.D. Spurr, E. Bucsela, J.F. Gleason, P.I. Palmer, I. Bey, A.M. Fiore, Q. Li, R.M. Yantosca, and R.B.A. Koelemeijer, J. Geophys. Res. 107, 4437, doi:10.1029/2001JD0010127, 2002. PDF
    • Simultaneous radiative transfer derivation of intensities and weighting functions in a general pseudo-spherical treatment, R.J.D. Spurr, J. Quant. Spectrosc. Radiat. Transfer, 75, 129-175, 2002. PDF
    • Fast and accurate 4-stream linearized discrete ordinate radiative transfer models for ozone profile retrieval, R.F. Van Oss R.J.D. Spurr, J. Quant. Spectrosc. Radiat. Transfer, 75, 177-220, 2002. PDF

    2001

    • On the accuracy of TOMS retrievals over tropical cloudy regions, M.J. Newchurch, X. Liu, J.H. Kim, and P.K. Bhartia, J. Geophys. Res., 106, 32,315-3227, 2001.
    • Lower tropospheric ozone derived from TOMS near mountainous regions, M.J. Newchurch, X. Liu, and J.H. Kim, J. Geophys. Res., 106, 23,403-20,412, 2001.
    • Isotopic composition of stratospheric water vapor: Implications for transport, D.G. Johnson, K.W. Jucks, W.A. Traub, and K.V. Chance, J. Geophys. Res. 106, 12,219-12,226, 2001.
    • Isotopic composition of stratospheric water vapor: Measurements and photochemistry, D.G. Johnson, K.W. Jucks, W.A. Traub, and K.V. Chance, J. Geophys. Res. 106, 12,211-12,218, 2001.
    • Air mass factor formulation for spectroscopic measurements from satellites: Application to formaldehyde retrievals from the Global Ozone Monitoring Experiment, P.I. Palmer, D.J. Jacob, K. Chance, R.V. Martin, R.J.D. Spurr, T.P. Kurosu, I. Bey, R. Yantosca, A. Fiore, and Q. Li, J. Geophys. Res. 106, 14,539-14,550, 2001. PDF
    • Global Air Quality. An Imperative for Long-Term Observational Strategies, M.M. Molina, J.H. Seinfeld, C.S. Atherton, K. Chance, K. Demerjian, D.W. Fahey, S. Kreidenweiss, D.A. Lashof, H. Levy II, J.M. Rodriguez, C.S. Sloane, and R.F. Weiss, Committee on Atmospheric Chemistry, National Research Council, National Academy Press, Washington, DC, ISBN 0-309-07414-2, 2001.
    • A linearized discrete ordinate radiative transfer model for atmospheric remote sensing retrieval, R.J.D. Spurr, T.P. Kurosu, and K. Chance, J. Quant. Spectrosc. Radiat. Transfer 68, 689-735, 2001. PDF
    • Linearized Radiative Transfer Theory: A General Discrete Ordinate Approach to the Calculation of Radiances and Analytic Weighting Functions, with Application to Atmospheric Remote Sensing, R.J.D. Spurr, Ph.D. Thesis, Technical University of Eindhoven, 2001.
    • Ozone Profile Algorithm, R.F. Van Oss, R.H.M. Voors, and R.J.D. Spurr, OMI Algorithm Theoretical Basis Document, Volume II, OMI Ozone Products (P.K. Bhartia ed.), ATBD-OMI-02, Version 1.0, September 2001.
    • OMI Algorithm Theoretical Basis Document, Volume IV, OMI Trace Gas Algorithms (K. Chance ed.), ATBD-OMI-04, Version 1.0, September 2001. PDF
    • Improved Molecular Constants for the Ground State of DO2, K.V. Chance, D.A. Ramsay, and E.H. Fink, J. Mol. Spec., 207, 123, 2001. PDF

    2000

    • Atmospheric trace gas sounding with SCIAMACHY, S. Noël, J. P. Burrows, H. Bovensmann, J. Frerick, K.V. Chance, A. H. P. Goede, and C. Muller, Adv. Space Res. 26, 1949-1954, 2000. PDF
    • Satellite observations of formaldehyde over North America from GOME, K. Chance, P.I. Palmer, R.J.D. Spurr, R.V. Martin, T.P. Kurosu, and D.J. Jacob, Geophys. Res. Lett. 27, 3461-3464, 2000. PDF
    • Isotopic composition of stratospheric ozone, D.G. Johnson, K.W. Jucks, W.A. Traub, and K.V. Chance, J. Geophys. Res. 105, 9025-9031, 2000.
    • Fast and accurate ozone profile retrieval for GOME and GOME-2, R.F. Van Oss and R.J.D. Spurr, Proceedings ERS-ENVISAT symposium, Gothenburg, Sweden, 16-20 October, 2000.

    1999

    • Global atmospheric monitoring with SCIAMACHY, S. Noël, H. Bovensmann, J.P. Burrows, J. Frerick, K.V. Chance, and A.P.H. Goede, Phys. Chem. Earth 24, 427-434, 1999. PDF
    • Stratospheric age spectra derived from observations of water vapor and methane, D.G. Johnson, K.W. Jucks, W.A. Traub, K.V. Chance, G.C. Toon, J.M. Russell III, and M.P. McCormick, J. Geophys. Res. 104, 21,595-21,602, 1999.
    • Nitric acid in the middle stratosphere as a function of altitude and aerosol loading, K.W. Jucks, D.G. Johnson, K.V. Chance, W.A. Traub, and R.W. Salawitch, J. Geophys. Res. 104, 26,715-26,723, 1999.
    • SCIAMACHY: Mission objectives and measurement modes H. Bovensmann, J.P. Burrows, M. Buchwitz, J. Frerick, S. Noël, V.V. Rozanov, K.V. Chance, and A.P.H. Goede, J. Atmos. Sci. 56, 127-150, 1999. PDF
    • CRAG -- Cloud Retrieval Algorithm for ESA's Global Ozone Monitoring Experiment, T.P. Kurosu, K.V. Chance and R.J.D. Spurr, Proceedings of the European Symposium on Atmospheric Measurements from Space (ESAMS), WPP-161, 513-521, Noordwijk, The Netherlands, 1999.
    • Pressure broadening of the 118.455 cm-1 rotational lines of OH by N2, O2, H2, and He, K. Park, L.R. Zink, K.V. Chance, K.M. Evenson, and I.G. Nolt, JQSRT 61, 715-716, 1999.

    1998

    • The SCIAMACHY instrument on ENVISAT-1, S. Noël, H. Bovensmann, J.P. Burrows, J. Frerick, K.V. Chance, A.P.H. Goede and C. Muller, Proc. S.P.I.E., Sensors, Systems, and Next-Generation Satellites II, 3498 94-104, 1998.
    • Improved spectral parameters for the three most abundant isotopomers of the oxygen molecule, R.R. Gamache, A. Goldman, and L.S. Rothman, J. Quant. Spectrosc. Radiat. Transfer, 59, 495-509, doi:10.1016/S0022-4073(97)00124-6, 1998. PDF
    • Observations of OH, HO2, H2O, and O3 in the upper stratosphere: Implications for HOx photochemistry, K.W. Jucks, D.G. Johnson, K.V. Chance, W.A. Traub, J.J. Margitan, G.B. Osterman, R.J. Salawitch, and Y. Sasano, Geophys. Res. Lett. 25, 3935-3938, 1998. PDF
    • Analysis of BrO measurements from the Global Ozone Monitoring Experiment, K. Chance, Geophys. Res. Lett. 25, 3335-3338, 1998. PDF
    • Detection of biomass burning combustion products in Southeast Asia from backscatter data taken by the GOME spectrometer, W. Thomas, E. Hegels, S. Slijkhuis, R. Spurr, and K. Chance, Geophys. Res. Lett. 25, 1317-1320, 1998. PDF
    • Atmospheric trace gas measurements from the European Space Agency's Global Ozone Monitoring Experiment, K.V.Chance, R.J.D. Spurr, and T.P. Kurosu, Proc. S.P.I.E. (EUROPTO), Satellite Remote Sensing of Clouds and the Atmosphere III, 3495, 230-234, 1998. PDF
    • Cloud retrieval algorithm for the European Space Agency's Global Ozone Monitoring Experiment, T.P. Kurosu, K.V.Chance, and R.J.D. Spurr, Proc. S.P.I.E. (EUROPTO), Satellite Remote Sensing of Clouds and the Atmosphere III, 3495, 17-26, 1998. PDF
    • The HITRAN molecular spectroscopic database and HAWKS (HITRAN Atmospheric Workstation): 1996 Edition, L.S. Rothman, C.P. Rinsland, A. Goldman, S.T. Massie, D.P. Edwards, J.-M. Flaud, A. Perrin, C. Camy-Peyret, V. Dana, J.-Y. Mandin, J. Schroeder, A. McCann, R.R. Gamache, R.B. Wattson, K. Yoshino, K.V. Chance, K.W. Jucks, L.R. Brown, V. Nemtchinov, and P. Varanasi, J. Quant. Spectrosc. Radiat. Transfer 60, 665-710, 1998. PDF
    • Improved line parameters for the X1Σ+ (0-0) and (0-1) bands of HI, A. Goldman, K.V. Chance, M.T. Coffey, J.W. Hannigan, W.G. Mankin, and C.P. Rinsland, JQSRT, 60, 869-874, 1998.
    • Pressure broadening of far infrared rotational transitions: 88.65 cm-1 H2O and 114.47 cm-1 O3, K.V. Chance, K. Park, and K.M. Evenson, JQSRT 59, 687-688, 1998.

    1997

    • GOME wavelength calibration using solar and atmospheric spectra, C. Caspar and K. Chance, Proc. Third ERS Symposium on Space at the Service of our Environment, Ed. T.-D. Guyenne and D. Danesy, European Space Agency publication SP-414, ISBN 92-9092-656-2, 1997. PDF
    • Ring effect studies: Rayleigh scattering, including molecular parameters for rotational Raman scattering, and the Fraunhofer spectrum, K. Chance and R.J.D. Spurr, Appl. Opt. 36, 5224-5230, 1997. PDF
    • Satellite measurements of atmospheric ozone profiles, including tropospheric ozone, from UV/visible measurements in the nadir geometry: A potential method to retrieve tropospheric ozone, K.V. Chance, J.P. Burrows, D. Perner, and W. Schneider, J. Quant. Spectrosc. Radiat. Transfer 57, 467-476, 1997. PDF
    • Improved Molecular Constants for the Ground State of HO2, K.V. Chance, K. Park, K.M. Evenson, L.R. Zink, F. Stroh, E.H. Fink, and D.A. Ramsay, J. Mol. Spec., 183, 418, 1997. PDF
    • Improvement of the O2 A band spectroscopic database for satellite-based cloud detection, K. Chance, JQSRT, 58, 375-378, 1997.

    1996

    • OMI - Ozone monitoring Instrument for Metop - Mission Objectives, User Requirements, System Requirements. Report of the OMI User Advisory Group, Ed. A.J.M. Piters and T.D. Guyenne, ESA WPP-123, 1996.
    • Ozone production and loss rate measurements in the middle stratosphere, K.W. Jucks, D.G. Johnson, K.V. Chance, W.A. Traub, R.J. Salawitch, and R.A. Stachnik, J. Geophys. Res. 101, 28,785-28,792, 1996.
    • Satellite measurements of halogen oxides by the Global Ozone Monitoring Experiment, GOME, on ERS2: Distribution of BrO and comparison with groundbased observations, E. Hegels, P.J. Crutzen, T. Kluepfel, D. Perner, J.P. Burrows, A. Ladstaetter-Weissenmayer, M. Eisinger, J. Callies, A. Hahne, K. Chance, U. Platt, and W. Balzer, Proc. XVIII Quadrennial Ozone Symposium, 1996.
    • Global Ozone Monitoring Experiment (GOME): Comparison of back scattered measurements and O3 DOAS/BUV retrievals, J.P. Burrows, M. Weber, E. Hilsenrath, J. Gleason, S. Janz, R.P. Cebula, X-y Gu, and K. Chance, Proc. XVIII Quadrennial Ozone Symposium, 1996.
    • Measurement of chlorine nitrate in the stratosphere using the v4 and v5 bands, D.G. Johnson, J. Orphal, G.C. Toon, K.V. Chance, W.A. Traub, K.W. Jucks, G. Guelachvili, and M. Morillon-Chapey, Geophys. Res. Lett. 23, 1745-1748, 1996.
    • THz Applications in Atmospheric Sensing, K. Chance, in ``Metrology Issues in Terahertz Physics and Technology,'' pp. 63-85, NIST special publication, 1996.
    • Simultaneous measurements of stratospheric HOx, NOx, and Clx: Comparison with a photochemical model, K. Chance, W.A. Traub, D.G. Johnson, K.W. Jucks, P. Ciarpallini, R.A. Stachnik, R.J. Salawitch, and H.A. Michelsen, J. Geophys. Res. 101, 9031-9043, 1996. PDF
    • Pressure broadening of the 50.873 cm-1 and the 83.469 cm-1 molecular oxygen lines, K. Park, I.G. Nolt, T.C. Steele, L.R. Zink, K.M. Evenson, K.V. Chance, and A.G. Murray, JQSRT 56, 315-316, 1996.
    • Pressure broadening of the 83.869 cm-1 rotational lines of OH by N2, O2, H2, and He, K. Park, L.R. Zink, K.M. Evenson, K.V. Chance, and I.G. Nolt, JQSRT 55, 285-287, 1996.

    1995

    • The GOME Users Manual, European Space Agency (ESA), ESA Publ. SP-1182, Publ. Div., Eur. Space Res. and Technol. Cent., Noordwijk, The Netherlands, 1995.
    • Far Infrared Spectrum of HO2, K.V. Chance, K. Park, K.M. Evenson, L.R. Zink, and F. Stroh, Journal of Molecular Spectroscopy 172, 407-420, 1995. PDF
    • Estimating the abundance of ClO from simultaneous remote sensing measurements of HO2, OH, and HOCl, D.G. Johnson, W.A. Traub, K.V. Chance, K.W. Jucks, and R.A. Stachnik, Geophys. Res. Lett. 22, 1869-1871, 1995.
    • Subsidence of the Arctic stratosphere determined from thermal emission of hydrogen fluoride, W.A. Traub, K.W. Jucks, D.G. Johnson, and K.V. Chance, J. Geophys. Res. 100, 11,261-11,267, 1995.
    • Detection of HBr and upper limit for HOBr: Bromine partitioning in the stratosphere, D.G. Johnson, W.A. Traub, K.V. Chance, and K.W. Jucks, Geophys. Res. Lett. 22, 1373-1376, 1995.
    • The Smithsonian stratospheric far-infrared spectrometer and data reduction system, D.G. Johnson, K.W. Jucks, W.A. Traub, and K.V. Chance, J. Geophys. Res. 100, 3091-3106, 1995. PDF

    1994

    • Chemical Change in the Arctic Vortex During AASE-II, W.A. Traub, K.W. Jucks, D.G. Johnson, and K.V. Chance, Geophys. Res. Lett. 21, 2595-2598, 1994.
    • Analysis of cloud-top height and cloud coverage from satellites using the O2 A and B Bands, A. Kuze and K.V. Chance, J. Geophys. Res. 99, 14,481-14,491, 1994. PDF
    • The far infrared fabry-perot spectrometer as a satellite-based atmospheric limb sounder, J. J. Wijnbergen, J. P. Burrows, K. Chance, W. Schneider, and P. de Valk, Proc. S.P.I.E., Passive Infrared Remote Sensing of Clouds and the Atmosphere II, 2309, 287-294, 1994.
    • OH measurements with air-borne and satellite instrumentation in the lower and upper stratosphere, P. de Valk, J.J. Wijnbergen, K. Chance, J.P. Burrows, and W. Schneider, Proc. S.P.I.E., Passive Infrared Remote Sensing of Clouds and the Atmosphere II, 2309, 279-286, 1994.
    • The OHIO concept: Refinements on a design for satellite-based measurements of stratospheric OH, K. Chance, J.J. Wijnbergen, P. de Valk, W. Schneider, and J.P. Burrows, Proc. S.P.I.E., Atmospheric Sensing and Modelling, 2311, 236-239, 1994. PDF
    • The Smithsonian Astrophysical Observatory database SAO92, K. Chance, K.W. Jucks, D.G. Johnson, and W.A. Traub, JQSRT, 52, 447-457, 1994.
    • The OHIO concept: A baseline design for satellite-based measurements of stratospheric OH, K. Chance, J.J. Wijnbergen, W. Schneider, and J.P. Burrows Proc. S.P.I.E., High-Temperature Superconducting Detectors: Bolometric and Nonbolometric, 2159, 21-33, 1994.
    • Pressure broadening of the 2.4978 THz rotational lines of HO2 by N2 and O2, K. Chance, P. De Natale, M. Bellini, M. Inguscio, G. Di Lonardo and L. Fusina, J. Mol. Spec., 163, 67-70, 1994.

    Earlier

    • J.P. Burrows, K.V. Chance, A.P.H. Goede, R. Guzzi, B.J. Kerridge, C. Muller, D. Perner, U. Platt, J.-P. Pommereau, W. Schneider, R.J. Spurr, and H. van der Woerd, Global Ozone Monitoring Experiment Interim Science Report, ed. T.D. Guyenne and C. Readings, Report ESA SP-1151, ESA Publications Division, ESTEC, Noordwijk, The Netherlands, ISBN 92-9092-041-6, 1993.
    • The far infrared spectrum of HI, K.V. Chance, T.D. Varberg, K. Park, and L.R. Zink, J. Mol. Spec., 162, 120-126, 1993.
    • A study of the accuracy of atmospheric trace gas vertical profile retrieval from satellite-based occultation measurements, J.P. Burrows, V.V. Rozanov, Yu.M. Timofeyev, A.V. Polyakov, R.J.D. Spurr and K.V. Chance, Proc. 1992 Int. Rad. Symposium, Tallinn, Estonia.
    • Ozone profile retrievals from the ESA GOME instrument, R. Munro, B.J. Kerridge, J.P. Burrows, and K. Chance, 1992 Quadrennial Ozone Symposium.
    • GOME instrument simulation, A.P.H. Goede, C.J.Th. Gunsing, T.M. Kamperman, J. de Vries, R.J. Spurr, J.P. Burrows and K. Chance, S.P.I.E. Meeting on Optical Methods in Atmospheric Chemistry, Berlin, Germany, 1992.
    • SCIAMACHY and GOME: The scientific objectives, J.P. Burrows and K.V. Chance, S.P.I.E. Meeting on Optical Methods in Atmospheric Chemistry, Berlin, Germany, 1992.
    • Upper limit for stratospheric HBr using far-infrared thermal emission spectroscopy, W.A. Traub, D.G. Johnson, K.W. Jucks, and K.V. Chance, Geophys. Res. Lett. 19, 1651-1654, 1992.
    • Measurement of the stratospheric hydrogen peroxide concentration profile using far infrared thermal emission spectroscopy, K.V. Chance, D.G. Johnson, W.A. Traub, and K.W. Jucks, Geophys. Res. Lett. 18, 1003-1006, 1991.
    • Scanning Imaging Absorption Spectrometer for Atmospheric ChartographY, J.P. Burrows and K.V. Chance, Proc. S.P.I.E., Future European and Japanese Remote Sensing Sensors and Programs, 1490 146-154, 1991.
    • Retrieval and molecule sensitivity studies for the Global Ozone Monitoring Experiment and the SCanning Imaging Absorption spectroMeter for Atmospheric CHartographY, K.V. Chance, J.P. Burrows, and W. Schneider, Proc. S.P.I.E., Remote Sensing of Atmospheric Chemistry, 1491, 151-165, 1991. PDF
    • On the use of O2 spin-rotation lines for elevation angle calibration of atmospheric thermal emission spectra, K.V. Chance, W.A. Traub, K.W. Jucks, and D.G. Johnson, Int. J. IR-MM Waves 12, 581-588, 1991. PDF
    • Stratospheric spectroscopy with the Far-Infrared Spectrometer (FIRS-2): Overview and recent results W.A. Traub, K.V. Chance, D. G. Johnson, and K. W. Jucks Proc. S.P.I.E., Remote Sensing of Atmospheric Chemistry, 1491, 298-307, 1991.
    • Pressure broadening of the 2.5 THz H35Cl rotational line by N2 and O2, K. Park. K.V. Chance, I.G. Nolt, J.V. Radostitz, M.D. Vanek, D.A. Jennings, and K.M. Evenson, J. Mol. Spec., 147, 521-525, 1991.
    • Pressure broadening of the 118.455 cm-1 rotational lines of OH by H2, He, N2, and O2, K.V. Chance, D. A. Jennings, K. M. Evenson, M. D. Vanek, I. G. Nolt, J. V. Radostitz, and K. Park, Journal of Molecular Spectroscopy 146, 375-380, 1991.
    • GOME and SCIAMACHY: Remote sensing of stratospheric and tropospheric trace gases, J.P. Burrows, W. Schneider and K.V. Chance, CEC Air Pollution Report 34: Polar Stratospheric Ozone. Proceedings of the First European Workshop, ed. J.A. Pyle and N.R.P. Harris, 99-102, ISBN2-87263-060-0, 1990.
    • SCIAMACHY instrument design, A.P.H. Goede, H.J.M. Aarts, C. van Baren, J.P. Burrows, K.V. Chance, R. Hoekstra, E. Hoelzle, W. Pitz, W. Schneider, C. Smorenberg, H. Visser, and J. de Vries, COSPAR XXVIII Plenary meeting, paper S.1.6.12, 1990.
    • Balloon intercomparison campaigns: Results of remote sensing measurements of HCl, C.B. Farmer, B. Carli, A. Bonetti, M. Carlotti, B.M. Dinelli, H. Fast, W.F.J. Evans, N. Louisnard, C. Alamichel, W. Mankin, M. Coffey, I.G. Nolt, D.G. Murcray, A. Goldman, G.M. Stokes, D.W. Johnson, W.A. Traub, K.V. Chance, R. Zander, and L. Delbouille, J. Atmos. Chem. 10, 237-272, 1990.
    • Intercomparison of measurements of stratospheric hydrogen fluoride, W.G. Mankin, M.T. Coffey, K.V. Chance, W.A. Traub, B. Carli, F. Mencaraglia, S. Piccioli, I.G. Nolt, J.V. Radostitz, R. Zander, G. Roland, D.W. Johnson, G.M. Stokes, C.B. Farmer, and R.K. Seals, J. Atmos. Chem. 10, 219-236, 1990.
    • Ozone measurements from the Balloon Intercomparison Campaign, D. Robbins, J. Waters, P. Zimmerman, R. Jarnot, J. Hardy, H. Pickett, S. Pollitt, W. Traub, K. Chance, N. Louisnard, W. Evans, and J. Kerr, J. Atmos. Chem. 10, 181-218, 1990.
    • Intercomparison of stratospheric water vapor profiles obtained during the Balloon Intercomparison Campaign, D. Murcray, A. Goldman, J. Kosters, R. Zander, W. Evans, N. Louisnard, C. Alamichel, M. Bangham, S. Pollitt, B. Carli, B. Dinelli, S. Piccioli, A. Volboni, W.A. Traub, and K. Chance, J. Atmos. Chem. 10, 159-179, 1990.
    • Stratospheric hydroperoxyl measurements, W.A. Traub, D.G. Johnson, and K.V. Chance, Science 247, 446-449, 1990. PDF
    • Measurement of stratospheric HOCl: Concentration profiles, including diurnal variation, K.V. Chance, D.G. Johnson, and W.A. Traub, J. Geophys. Res. 94, 11,059-11,069, 1989
    • Air- and oxygen-broadening coefficients for the O2 rotational line at 60.46 cm-1, D.A. Jennings, K.M. Evenson, M.D. Vanek, I.G. Nolt, J. V. Radostitz, and K.V. Chance, Geophys. Res. Lett. 14}, 722-725, 1987; erratum Geophys. Res. Lett. 14, 981, 1987.
    • Accurate rotational constants of CO, HCl and HF: Spectral standards for the 0.3 to 6 THz (10 to 200 cm-1) region, I.G. Nolt, J.V. Radostitz, G. DiLonardo, K.M. Evenson, D.A. Jennings, K.R. Leopold, M.D. Vanek, L.R. Zink, A. Hinz, and K.V. Chance, J. Mol. Spec., 125, 274-287, 1987.
    • Atomic oxygen in the lower thermosphere, F.J. Lin, K.V. Chance, and W.A. Traub, J. Geophys. Res. 92, 4325, 1987.
    • Evidence for stratospheric hydrogen peroxide, K.V. Chance and W.A. Traub, J. Geophys. Res. 92, 3061-3066, 1987.
    • Performance of a single-axis platform for balloon-borne remote sensing, W.A. Traub, K.V. Chance, and L.M. Coyle, Rev. Sci. Instr., 57, 2519, 1986.
    • Design of a single-axis platform for balloon-borne remote sensing, L.M. Coyle, G. Aurilio, G.U. Nystrom, J. Bortz, B.G. Nagy, K.V. Chance, and W.A. Traub, Rev. Sci. Instr., 57, 2512, 1986.
    • Far-infrared radiometer to map OH in the middle atmosphere, I.G. Nolt, J.V. Radostitz, K.V. Chance, W.A. Traub, P.A.R. Ade, and B. Carli, Proc. AIAA/NASA Earth Observing System Conference, AIAA-85-3007, 1985.
    • Far-infrared spectroscopy of the Earth's stratosphere, K.V. Chance, W.A. Traub, B. Carli, I.G. Nolt, and J.V. Radostitz, Proc. AIAA/NASA Earth Observing System Conference, AIAA-85-3006, 1985.
    • Far-infrared measurements of stratospheric trace species, K.V. Chance, F.J. Lin, and W.A. Traub, OSA Topical Meeting on Optical Remote Sensing of the Atmosphere, Technical Digest, TuC7, 1985.
    • Intercomparison of stratospheric water vapor profiles obtained during the Balloon Intercomparison Campaign, D.G. Murcray, A. Goldman, J. Kosters, R. Zander, W. Evans, N. Louisnard, C. Alamichel, M. Bangham, S. Pollitt, B. Carli, B. Dinelli, S. Piccioli, A. Volboni, W. Traub, and K. Chance, Proc. Quadrennial Ozone Symposium, ed. C.S. Zerefos and A. Ghazi, 144-148, D. Reidel, Hingham, MA, 1985.
    • Ozone intercomparisons from the Balloon Intercomparison Campaign, D. Robbins, W. Evans, N. Louisnard, S. Pollitt, W. Traub, K. Chance, and J. Waters, Proc. Quadrennial Ozone Symposium, ed. C.S. Zerefos and A. Ghazi, 454-459, D. Reidel, Hingham, MA, 1985.
    • An upper limit for stratospheric hydrogen peroxide, K. V. Chance and W.A. Traub, J. Geophys. Res. D 89, 11,655-11,660, 1984; erratum J. Geophys. Res. D 90, 10,756 (1985).
    • Far infrared spectroscopy of the stratosphere, K.V. Chance and W.A. Traub, Proc. CMA/NBS Workshop on Atmospheric Spectra, IIA76, 1983.
    • Far infrared spectroscopy, K.V. Chance, Proc. CMA/NBS Workshop on Atmospheric Spectra, IIA53, 1983.
    • Far infrared spectroscopy of the stratosphere, K.V. Chance and W.A. Traub, International Workshop on Atmospheric Spectroscopy, Rutherford Appleton Laboratory, U.K., 1983.
    • Q branches in the rotational spectrum of HOCl, K.V. Chance and W.A. Traub, JQSRT, 29, 81, 1982.
    • The torsional spectrum of chlorine nitrate, K.V. Chance and W.A. Traub, J. Mol. Spec., 95, 306-312, 1982.
    • Use of a Fourier transform spectrometer on a balloon-borne telescope and at the MMT, W.A. Traub, K.V. Chance, J.C. Brasunas, J.M. Vrtilek, and N.P. Carleton, Proc. S.P.I.E., Instrumentation in Astronomy IV, 331, 208, 1982.
    • Stratospheric HF and HCl observations, W.A. Traub and K.V. Chance, Geophys. Res. Lett., 8, 1075, 1981.
    • Far infrared measurement of stratospheric HCl, K.V. Chance, J.C. Brasunas, and W.A. Traub, Geophys. Res. Lett., 7, 704, 1980.
    • Far infrared measurability of HCl, OH, H2O2, HO2 and HOCl, K.V. Chance and W.A. Traub, OSA Topical Meeting on Spectroscopy in Support of Atmospheric Measurements, Technical Digest, TuP2, 1980.
    • Far infrared measurement of stratospheric trace species, K.V. Chance and W.A. Traub, NBS Conference on High Resolution Infrared Applications and Developments, Gaithersburg, MD, 1980.




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