Pubs by Program

This page lists the publications in the ESD Publications database, sorted by first author and year. To filter the list, select one or more Research Program(s) to filter the list, or else specify a publication year (e.g., 2011). Options to view other pages of the list are provided at the bottom of the page.

Publication Citation Research Program(s)
Jin, Z., C. Lukashin, A. Gopalan, and W. Sun (2012), Correlation between SCIAMACHY, MODIS, and CERES reflectance measurements: Implications for CLARREO, J. Geophys. Res., 117, D05114, doi:10.1029/2011JD017051. UARP
Jin, Z., C. Lukashin, et al. (2013), An Efficient And Effective Method to Simulate The Earth Spectral Reflectance Over Large Time and Space Scales, GEOPHYSICAL RESEARCH LETTERS, 40, 374-379, doi:10.1002/GRL.50116.. RSP
Jin, Z., et al. (2014), Interannual variability of the Earth's spectral solar reflectance from measurements and simulations, J. Geophys. Res., 119, 4458-4470, doi:10.1002/2013JD021056. RSP
Jin, Z., et al. (2016), An Initial Study on Climate Change Fingerprinting Using the Reflected Solar Spectra, J. Climate, 28, doi:10.1175/JCLI-D-15-0297.1. RSP
Jin, Z., et al. (2017), Errors in spectral fingerprints and their effects on climate fingerprinting accuracy in the solar spectrum, J. Quant. Spectrosc. Radiat. Transfer, 188, doi:10.1016/j.jqsrt.2016.06.029. RSP
Jo, D.S., A. Hodzic, L.K. Emmons, S. Tilmes, R.H. Schwantes, M.J. Mills, P. Campuzano-Jost, W. Hu, R.A. Zaveri, R.C. Easter, B. Singh, Z. Lu, C. Schulz, J. Schneider, J.E. Shilling, A. Wisthaler, and J.L. Jimenez (2021), Future changes in isoprene-epoxydiol-derived secondary organic aerosol (IEPOX SOA) under the Shared Socioeconomic Pathways: the importance of physicochemical dependency, Atmos. Chem. Phys., 21, 3395-3425, doi:10.5194/acp-21-3395-2021. TCP
Jo, D.S., B.A. Nault, S. Tilmes, A. Gettelman, C.S. McCluskey, A. Hodzic, D.K. Henze, M.O. Nawaz, K.M. Fung, and J.L. Jimenez (2023), Global Health and Climate Effects of Organic Aerosols from Different Sources, Environ. Sci. Technol., 57, 13793-13807, doi:10.1021/acs.est.3c02823. TCP
Johnson, B.T., S. Christopher, B.J.M. Haywood, S.R. Osborne, S. McFarlanec, C. Hsu, D.C. Salustrod, and R. Kahnd (2009), Measurements of aerosol properties from aircraft, satellite and ground-based remote sensing: A case-study from the Dust and Biomass-burning Experiment (DABEX), Q. J. R. Meteorol. Soc., 135, 922-934, doi:10.1002/qj.420. RSP
Johnson, B.T., G.W. Petty, and G. Skofronick-Jackson (2012), Microwave Properties of Ice-Phase Hydrometeors for Radar and Radiometers: Sensitivity to Model Assumptions, J. Appl. Meteor. Climat., 51, 2152-2171, doi:10.1175/JAMC-D-11-0138.1. RSP
Johnson, D.G., and M. Mlynczak (2011), Science, Measurement, and Technology Requirements for Infrared Climate Benchmark Missions, OSA Technical Digest. RSP
Johnson, K.S., A. Laskin, J.L. Jimenez, V. Shutthanandan, L.T. Molina, D. Salcedo, K. Dzepina, and M.J. Molina (2008), Comparative Analysis of Urban Atmospheric Aerosol by Particle-Induced X-ray Emission (PIXE), Proton Elastic Scattering Analysis (PESA), and Aerosol Mass Spectrometry (AMS), Environ. Sci. Technol., 42, 6619-6624, doi:10.1021/es800393e. TCP
Johnson, M.S., X. Liu, P. Zoogman, J. Sullivan, M.J. Newchurch, S. Kuang, T. Leblanc, and T. McGee (2018), Evaluation of potential sources of a priori ozone profiles for TEMPO tropospheric ozone retrievals, Atmos. Meas. Tech., 11, 3457-3477. TCP
Johnson, M.S., F.M. Schwandner, C.S. Potter, H.M. Nguyen, E. Bell, R.R. Nelson, S. Philip, and C.W. O'Dell (2020), Carbon Dioxide Emissions During the 2018 Kilauea Volcano Eruption Estimated Using OCO‐2 Satellite Retrievals, Geophys. Res. Lett., 47, e2020GL090507, doi:10.1029/2020GL090507. Atmospheric Composition, TCP, CCEP
Johnson, M.S., K. Strawbridge, K.E. Knowland, C. Keller, and M. Travis (2021), Long-range transport of Siberian biomass burning emissions to North America during FIREX-AQ, Atmos. Environ., 252, 118241, doi:10.1016/j.atmosenv.2021.118241. Atmospheric Composition, TCP
Johnson, M.S., E. Matthews, J. Du, V. Genovese, and D. Bastviken (2022), Methane Emission From Global Lakes: New Spatiotemporal Data and Observation-Driven Modeling of Methane Dynamics Indicates Lower Emissions, J. Geophys. Res., 127, e2022JG006793, doi:10.1029/2022JG006793. THP, IDS, Atmospheric Composition, CCEP
Johnson, M.S., A.H. Souri, S. Philip, R. Kumar, A. Naeger, J. Geddes, L. Judd, S. Janz, H. Chong, and J. Sullivan (2023), Satellite remote-sensing capability to assess tropospheric-column ratios of formaldehyde and nitrogen dioxide: case study during the Long Island Sound Tropospheric Ozone Study 2018 (LISTOS 2018) field campaign, Atmos. Meas. Tech., 16, 2431-2454, doi:10.5194/amt-16-2431-2023. Atmospheric Composition, UARP
Johnson, M.S., E. Matthews, D. Bastviken, B. Deemer, J. Du, and V. Genovese (2023), V. (2021). Spatiotemporal methane emission from global reservoirs, J. Geophys. Res., e2021JG006305, doi:10.1029/2021JG006305. THP, IDS, Atmospheric Composition, CCEP
Johnson, M.S., A. Rozanov, M. Weber, N. Mettig, J. Sullivan, M.J. Newchurch, S. Kuang, T. Leblanc, F. Chouza, T.A. Berkoff, G. Gronoff, K.B. Strawbridge, R.J. Alvarez, A.O. Langford, C.J. Senff, G. Kirgis, B. McCarty, and L. Twigg (2024), TOLNet validation of satellite ozone profiles in the troposphere: impact of retrieval wavelengths, Atmos. Meas. Tech., 17, 2559-2582, doi:10.5194/amt-17-2559-2024. Atmospheric Composition, TCP
Jolleys, M.D., H. Coe, G. McFiggans, G. Capes, J.D. Allan, J. Crosier, P.I. Williams, G. Allen, K.N. Bower, J.L. Jimenez, L.M. Russell, M. Grutter, and D. Baumgardner (2012), Characterizing the Aging of Biomass Burning Organic Aerosol by Use of Mixing Ratios: A Meta-analysis of Four Regions, Environ. Sci. Technol., 46, 13093-13102, doi:10.1021/es302386v. TCP
Jordan, C.E., J.H. Crawford, A.J. Beyersdorf, T.F. Eck, H.S. Halliday, B.A. Nault, L.-S. Chang, J. Park, T. Lee‖‖, A. Whitehill, J. Szykman, M.K. Schueneman, P. Campuzano-Jost, J.L. Jimenez, J.P. DiGangi, G.S. Diskin, W. Hair, R.E. Kuehn, R.E. Holz, G. Chen, and K. Travis (2020), Investigation of factors controlling PM2.5 variability across the South Korean Peninsula during KORUS-AQ, variability across the South Korean Peninsula during KORUS-AQ, 8, 28, doi:10.1525/elementa.424. TCP