Recent Publications

This page lists the most recently-uploaded publications that have been added to the ESD Publications database. Select one or more Research Program(s) to filter the list.

Publication Citation Research Program(s) Revision create time
Fridlind, A.M., R. Atlas, B. van Diedenhoven, J. Um, G.M. McFarquhar, A.S. Ackerman, E.J. Moyer, and R.P. Lawson (2016), Derivation of physical and optical properties of mid-latitude cirrus ice crystals for a size-resolved cloud microphysics model, Atmos. Chem. Phys., 16, 7251-7283, doi:10.5194/acp-16-7251-2016. RSP
Luo, T., Z. Wang, R.A. Ferrare, C.A. Hostetler, and R. Yuan (2015), Vertically resolved separation of dust and other aerosol types by a new lidar depolarization method, Optics Express, 23, 14095-14107, doi:10.1364/OE.23.014095. RSP
Naeger, A.R., and S.A. Christopher (2014), The identification and tracking of volcanic ash using the Meteosat Second Generation (MSG) Spinning Enhanced Visible and Infrared Imager (SEVIRI), Atmos. Meas. Tech., 7, 581-597, doi:10.5194/amt-7-581-2014. ACMAP, RSP
Zhang, J., J.R. Campbell, E.J. Hyer, J.S. Reid, D.L. Westphal, and R.S. Johnson (2014), Evaluating the impact of multisensor data assimilation on a global aerosol particle transport model, J. Geophys. Res., 119, 4674-4689, doi:10.1002/2013JD020975. IDS, RSP
Toth, T.D., J. Zhang, J.R. Campbell, E.J. Hyer, J.S. Reid, Y. Shi, and D.L. Westphal (2014), Impact of data quality and surface-to-column representativeness on the PM2.5/satellite AOD relationship for the contiguous United States, Atmos. Chem. Phys., 14, 6049-6062, doi:10.5194/acp-14-6049-2014. IDS, RSP
Li, J., B.E. Carlson, and A.A. Lacis (2014), Application of spectral analysis techniques to the intercomparison of aerosol data - Part 4: Synthesized analysis of multisensor satellite and ground-based AOD measurements using combined maximum covariance analysis, Atmos. Meas. Tech., 7, 2531-2549, doi:10.5194/amt-7-2531-2014. RSP
Jethva, H., O. Torres, F. Waquet, D. Chand, and Y. Hu (2014), How do A-train sensors intercompare in the retrieval of above-cloud aerosol optical depth? A case study-based assessment, Geophys. Res. Lett., 41, 186-192, doi:10.1002/2013GL058405. RSP
Meyer, K., S. Platnick, and Z. Zhang (2015), Simultaneously inferring above-cloud absorbing aerosol optical thickness and underlying liquid phase cloud optical and microphysical properties using MODIS, J. Geophys. Res., 120, 5524-5547, doi:10.1002/2015JD023128. RSP
Feng, N., and S.A. Christopher (2015), Measurement-based estimates of direct radiative effects of absorbing aerosols above clouds, J. Geophys. Res., 120, 6908-6921, doi:10.1002/2015JD023252. RSP
Li, J., B.E. Carlson, and A.A. Lacis (2015), How well do satellite AOD observations represent the spatial and temporal variability of PM2.5 concentration for the United States?, Atmos. Environ., 102, 260-273, doi:10.1016/j.atmosenv.2014.12.010. RSP
Kokhanovsky, A.A., A.B. Davis, B. Cairns, O. Dubovik, O.P. Hasekamp, I. Sano, S. Mukai, V.V. Rozanov, P. Litvinov, T. Lapyonok, I.S. Kolomiets, Y.A. Oberemok, S. Savenkov, W. Martin, A. Wasilewski, A. Di Noia, F.A. Sap, J. Rietjens, F. Xu, V. Natraj, M. Duan, T. Cheng, and R. Munro (2015), Space-based remote sensing of atmospheric aerosols: The multi-angle spectro-polarimetric frontier, Earth-Science Reviews, 85-116, doi:10.1016/j.earscirev.2015.01.012. RSP, TCP
Van Lier-Walqui, M., A.M. Fridlind, A.S. Ackerman, S. Collis, J. Helmus, D.R. Macgorman, K. North, P. Kollias, and D.J. Posselt (2016), On Polarimetric Radar Signatures of Deep Convection for Model Evaluation: Columns of Specific Differential Phase Observed during MC3E*, Mon. Wea. Rev., 144, 737-758, doi:10.1175/MWR-D-15-0100.1. RSP
Chand, D., T.L. Anderson, R. Wood, R.J. Charlson, Y. Hu, Z. Liu, and M. Vaughan (2008), Quantifying above-cloud aerosol using spaceborne lidar for improved understanding of cloudy-sky direct climate forcing, J. Geophys. Res., 113, D13206, doi:10.1029/2007JD009433. RSP
Chand, D., R. Wood, T.L. Anderson, S.K. Satheesh, and R.J. Charlson (2009), Satellite-derived direct radiative effect of aerosols dependent on cloud cover, Nature Geoscience, 1-4, doi:10.1038/NGEO437. RSP
Geogdzhayev, I.V., M.I. Mishchenko, J. Li, W.B. Rossow, L. Liu, and B. Cairns (2015), Extension and statistical analysis of the GACP aerosol optical thickness record, Atmos. Res., 164–165, 268-277, doi:10.1016/j.atmosres.2015.05.013. RSP
Zuidema, P., J. Redemann, J. Haywood, R. Wood, S. Piketh, M. Hipondoka, and P. Formenti (2016), Interactions: Smoke and Clouds above the Southeast Atlantic Upcoming Field Campaigns Probe Absorbing Aerosol’s Impact on Climate, Bull. Am. Meteorol. Soc., 19-23, doi:10.1175/BAMS-D-15-00082.1. Atmospheric Composition, RSP
Sun, W., Y. Hu, D.G. MacDonnell, C. Weimer, and R.R. Baize (2016), Technique to separate lidar signal and sunlight, Opt. Express, 24, 12949-12954, doi:10.1364/OE.24.012949. RSP
Sayer, A.M., N.C. Hsu, C. Bettenhausen, J. Lee, J. Redemann, B. Schmid, and Y. Shinozuka (2016), Extending “Deep Blue” aerosol retrieval coverage to cases of absorbing aerosols above clouds: Sensitivity analysis and first case studies, J. Geophys. Res., 121, doi:10.1002/2015JD024729. RSP
Hu, Z., C. Zhao, J. Huang, L.R. Leung, Y. Qian, H. Yu, L. Huang, and O.V. Kalashnikova (2016), Trans-Pacific transport and evolution of aerosols: evaluation of quasi-global WRF-Chem simulation with multiple observations, Geosci. Model Dev., 9, 1725-1746, doi:10.5194/gmd-9-1725-2016. ACMAP, RSP
Pincus, R., E.J. Mlawer, L. Oreopoulos, A.S. Ackerman, S. Baek, M. Brath, S.A. Buehler, K.E. Cady-Pereira, J.N.S. Cole, J.-L. Dufresne, M. Kelley, J. Li, J. Manners, D.J. Paynter, R. Roehrig, M. Sekiguchi, and D.M. Schwarzkopf (2015), Radiative flux and forcing parameterization error in aerosol-free clear skies, Geophys. Res. Lett., 42, 5485-5492, doi:10.1002/2015GL064291. MAP, RSP