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)
Le Kuai, O.V. Kalashnikova, F.M. Hopkins, G.C. Hulley, H. Lee, M.J. Garay, R.M. Duren, J.R. Worden, and S.J. Hook (2020), Quantification of Ammonia Emissions With High Spatial Resolution Thermal Infrared Observations From the Hyperspectral Thermal Emission Spectrometer (HyTES) Airborne Instrument, IEEE Journal Of Selected Topics In Applied Earth Observations And Remote Sensing, 1-15, doi:10.1109/JSTARS.2019.2918093. Atmospheric Composition, CCEP
LeBlanc, S. (2018), samuelleblanc/fp: Moving Lines: NASA airborne research flight planning tool release (Version v1.21), Zenodo., doi:10.5281/zenodo.1478126. RSP
LeBlanc, S.E., et al. (2015), A spectral method for discriminating thermodynamic phase and retrieving cloud optical thickness and effective radius using transmitted solar radiance spectra, Atmos. Meas. Tech., 8, 1361-1383, doi:10.5194/amt-8-1361-2015. RSP
LeBlanc, S.E., K.S. Schmidt, P. Pilewskie, J. Redemann, C. Hostetler, R. Ferrare, J. Hair, J.M. Langridge, and D.A. Lack (2012), Spectral aerosol direct radiative forcing from airborne radiative measurements during CalNex and ARCTAS, J. Geophys. Res., 117, D00V20, doi:10.1029/2012JD018106. RSP
LeBlanc, S.E., P. Pilewskie, K.S. Schmidt, and O. Coddington (2015), A spectral method for discriminating thermodynamic phase and retrieving cloud optical thickness and effective radius using transmitted solar radiance spectra, Atmos. Meas. Tech., 8, 1361-1383, doi:10.5194/amt-8-1361-2015. RSP
LeBlanc, S.E., J. Redemann, C. Flynn, K. Pistone, M. Kacenelenbogen, M. Segal-Rosenheimer, Y. Shinozuka, S. Dunagan, R.P. Dahlgren, K. Meyer, J. Podolske, S.G. Howell, S. Freitag, J. Small-Griswold, B. Holben, M. Diamond, R. Wood, P. Formenti, S. Piketh, G. Maggs-Kölling, M. Gerber, and A. Namwoonde (2020), Above-cloud aerosol optical depth from airborne observations in the southeast Atlantic, Atmos. Chem. Phys., 20, 1565-1590, doi:10.5194/acp-20-1565-2020. RSP
LeBlanc, S.E., M. Segal-Rozenhaimer, J. Redemann, C. Flynn, R.R. Johnson, S.E. Dunagan, R. Dahlgren, J. Kim, M. Choi, A. da Silva, P. Castellanos, Q. Tan, L. Ziemba, K.L. Thornhill, and M. Kacenelenbogen (2022), Airborne observations during KORUS-AQ show that aerosol optical depths are more spatially self-consistent than aerosol intensive properties, Atmos. Chem. Phys., doi:10.5194/acp-22-11275-2022. Atmospheric Composition, TCP
Leblanc, T., T.D. Walsh, I.S. McDermid, G.C. Toon, J.-F. Blavier, B. Haines, W.G. Read, B. Herman, E. Fetzer, S. Sander, T. Pongetti, D.N. Whiteman, T.G. McGee, L. Twigg, G. Sumnicht, D. Venable, M. Calhoun, A. Dirisu, D. Hurst, A. Jordan, E. Hall, L. Miloshevich, H. Vömel, C. Straub, N. Kampfer, G.E. Nedoluha, R.M. Gomez, K. Holub, S. Gutman, J. Braun, T. Vanhove, G. Stiller, and A. Hauchecorne (2011), Measurements of Humidity in the Atmosphere and Validation Experiments (MOHAVE)-2009: overview of campaign operations and results, Atmos. Meas. Tech., 4, 2579-2605, doi:10.5194/amt-4-2579-2011. UARP
Leblanc, T., M.A. Brewer, P.S. Wang, M.J. Granados-Muñoz, K.B. Strawbridge, M. Travis, B. Firanski, J.T. Sullivan, T.J. McGee, G.K. Sumnicht, L.W. Twigg, T.A. Berkoff, W. Carrion, G. Gronoff, A. Aknan, G. Chen, R.J. Alvarez, A.O. Langford, C.J. Senff, G. Kirgis, M.S. Johnson, S. Kuang, and M.J. Newchurch (2018), Validation of the TOLNet lidars: the Southern California Ozone Observation Project (SCOOP), Atmos. Meas. Tech., 11, 6137-6162, doi:10.5194/amt-11-6137-2018. TCP
Leckey, J. (2016), ABSOLUTE STANDARDS FOR CLIMATE MEASUREMENTS, Xxiii Isprs Congress, Commission Viii, 41, 1407-1408, doi:10.5194/isprs-archives-XLI-B8-1407-2016. RSP
Leckey, J. (2017), CLIMATE ABSOLUTE RADIANCE AND REFRACTIVITY OBSERVATORY (CLARREO), Remote Sensing of Environment, 47, 213-217, doi:10.5194/isprsarchives-XL-7-W3-213-2015. RSP
Lee, B., L. Di Girolamo, G. Zhao, and Y. Zhan (2018), Three-Dimensional Cloud Volume Reconstruction from the Multi-angle Imaging SpectroRadiometer, doi:10.3390/rs10111858. RSP
Lee, H., A.M. Fridlind, and A.S. Ackerman (2019), An Evaluation of Size-Resolved Cloud Microphysics Scheme Numerics for Use with Radar Observations. Part I: Collision–Coalescence, J. Atmos. Sci., 76, 247-263, doi:10.1175/JAS-D-18-0174.1. RSP
Lee, H., A.M. Fridlind, and A.S. Ackerman (2021), An Evaluation of Size-Resolved Cloud Microphysics Scheme Numerics for Use with Radar Observations. Part II: Condensation and Evaporation, J. Atmos. Sci., 78, 1629-1645, doi:10.1175/JAS-D-20-0213.1. RSP
Lee, H.-J., L.-S. Chang, D.A. Jaffe, J. Bak, X. Liu, G.G. Abad, H.-Y. Jo, Y.-J. Jo, J.-B. Lee, and C.-H. Kim (2021), Ozone Continues to Increase in East Asia Despite Decreasing NO2: Causes and Abatements, Causes and Abatements. Remote Sens., 13, 2177, doi:10.3390/rs13112177. Atmospheric Composition
Lee, H.-J., L.-S. Chang, D.A. Jaffe, J. Bak, X. Liu, G.G. Abad, H.-Y. Jo, Y.-J. Jo, J.-B. Lee, G.-H. Yang, J.-M. Kim, and C.-H. Kim (2022), Satellite-Based Diagnosis and Numerical Verification of Ozone Formation Regimes over Nine Megacities in East Asia, yujinjo@pusan.ac.kr (Y.-J.J.jm6449@naver.com (J.-M.K.) * Correspondence, chkim2@pusan.ac.kr, 1285, doi:10.3390/rs14051285. Atmospheric Composition
Lee, J.M., J.D. Mirocha, N.P. Lareau, T. Whitney, W. To, A. Kochanski, and W. Lassman (2023), Sensitivity of Pyrocumulus Convection to Tree Mortality During the 2020 Creek Fire in California, Geophys. Res. Lett.. TCP
Lee, J.N., D.L. Wu, and A. Ruzmaikin (2013), Interannual variations of MLS carbon monoxide induced by solar cycle, Journal of Atmospheric and Solar-Terrestrial Physics, 102, 99-104. UARP
Lee, J.N., D.T. Shindell, and S. Hameed (2009), The Influence of Solar Forcing on Tropical Circulation, J. Climate, 22, 5870-5885, doi:10.1175/2009JCLI2670.1. ACMAP, MAP
Lee, J.N., S. Hameeda, and D.T. Shindell (2008), The northern annular mode in summer and its relation to solar activity variations in the GISS ModelE, Journal of Atmospheric and Solar-Terrestrial Physics, 70, 730-741, doi:10.1016/j.jastp.2007.10.012. ACMAP, MAP