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 |
|---|---|---|
| shinozuka, saide, ferrada, burton, ferrare, doherty, gordon, longo, mallet, Y. feng, Q. Wang, Y. Cheng, A. dobracki, freitag, howell, leblanc, flynn, segal-rozenhaimer, pistone, podolske, stith, bennett, Carmichael, Da Silva, R. Govindaraju, et al. (2019), Modeling the smoky troposphere of the southeast Atlantic: a comparison to ORACLES airborne observations from September of 2016, Atmos. Chem. Phys. Discuss., doi:https://doi.org/10.5194/acp-2019-678 (submitted). | Atmospheric Composition, RSP | |
| Kacarab, M., K.L. Thornhill, A. Dobracki, S.G. Howell, J. O'Brien, S. Freitag, M.R. Poellot, R. Wood, P. Zuidema, J. Redemann, and A. Nenes (2020), Biomass Burning Aerosol as a Modulator of Droplet Number in the Southeast Atlantic Region, Atmos. Chem. Phys., 20, 3029-3040, doi:10.5194/acp-20-3029-2020. | Atmospheric Composition, RSP | |
| herman, R., J. worden, noone, henze, bowman, cady, payne, kulawik, and D. fu (2019), Comparison of Optimal Estimation HDO/H2O Retrievals from AIRS with ORACLES measurements, doi:https://doi.org/10.5194/amt-2019-195 (submitted). | ||
| Dzambo, T. L'Ecuyer, O. Sy, and S. Tanelli (2019), The Observed Structure and Precipitation Characteristics of Southeast Atlantic Stratocumulus from Airborne Radar during ORACLES 2016-17, J. Appl. Meteor. Climat., 58, 2197-2215, doi:https://doi.org/10.1175/JAMC-D-19-0032.1. | Atmospheric Composition, RSP, ADP | |
| Stimpfle, R.M., D.M. Wilmouth, R.J. Salawitch, and J.G. Anderson (2004), First measurements of ClOOCl in the stratosphere: The coupling of ClOOCl and ClO in the Arctic polar vortex, J. Geophys. Res., 109, D03301, doi:10.1029/2003JD003811. | UARP | |
| Hu, X., R. Bürgmann, Z. Lu, A.L. Handwerger, T. Wang, and R. Miao (2019), Mobility, Thickness, and Hydraulic Diffusivity of the Slow‐Moving Monroe Landslide in California Revealed by L‐Band Satellite Radar Interferometry, J. Geophys. Res., 124, 7504-7518, doi:10.1029/2019JB017560. | ESI | |
| Finnegan, N.J., K.N. Broudy, A.L. Nereson, J.J. Roering, A.L. Handwerger, and G. Bennett (2019), River channel width controls blocking by slow-moving landslides in California’s Franciscan mélange, Earth Surf. Dynam., 7, 879-894, doi:10.5194/esurf-7-879-2019. | ESI | |
| Chatfield, R.B., M. Sorek-Hamer, R.F. Esswein, and A. Lyapustin (2019), Satellite Mapping of PM2.5 Episodes in the Wintertime San Joaquin Valley: A “Static” Model Using Column Water Vapor, Atmos. Chem. Phys., doi:10.5194/acp-2019-262. | ||
| Ulrich, T., S. Vater, E.H. Madden, J. Behrens, Y. Van Dinther, I. Van Zelst, E.J. Fielding, C. Liang, and A.-A. Gabriel (2019), Coupled, Physics-Based Modeling Reveals Earthquake Displacements are Critical to the 2018 Palu, Sulawesi Tsunami, Pure Appl. Geophys, doi:10.1007/s00024-019-02290-5. | ESI | |
| Luo, Y., and Z. Liu (2019), Rate‐and‐State Model Casts New Insight into Episodic Tremor and Slow‐slip Variability in Cascadia, Geophys. Res. Lett., 46, 6352-6362, doi:10.1029/2019GL082694. | ||
| Doicu, A., and M.I. Mishchenko (2019), Electromagnetic scattering by discrete random media. IV: Coherent backscattering, J. Quant. Spectrosc. Radiat. Transfer, 236, 106565, doi:10.1016/j.jqsrt.2019.07.008. | RSP | |
| Kumar, C., S. Chatterjee, and T. Oommen (2019), Mapping hydrothermal alteration minerals using highresolution AVIRIS-NG hyperspectral data in the Hutti-Maski gold deposit area, India, International Journal of Remote Sensing, doi:10.1080/01431161.2019.1648906. | ESI | |
| Doicu, A., and M.I. Mishchenko (2019), Electromagnetic scattering by discrete random media. III: The vector radiative transfer equation, J. Quant. Spectrosc. Radiat. Transfer, 236, 106564, doi:10.1016/j.jqsrt.2019.07.007. | RSP | |
| Argus, D.F., F.W. Landerer, D.N. Wiese, H.R. Martens, Y. Fu, J.S. Famiglietti, B.F. Thomas, T.G. Farr, A.W. Moore, and M.M. Watkins (2017), Sustained Water Loss in California’s Mountain Ranges During Severe Drought From 2012 to 2015 Inferred From GPS, J. Geophys. Res., 122, doi:10.1002/2017JB014424. | ESI | |
| Pistone, K., J. Redemann, S. Doherty, P. Zuidema, S. Burton, B. Cairns, S. Cochrane, R. Ferrare, C. Flynn, S. Freitag, S.G. Howell, M. Kacenelenbogen, S. LeBlanc, X. Liu, K.S. Schmidt, A.J. Sedlacek, M. Segal-Rozenhaimer, Y. Shinozuka, S. Stamnes, B. van Diedenhoven, G. Van Harten, and F. Xu (2019), Intercomparison of biomass burning aerosol optical properties from in situ and remote-sensing instruments in ORACLES-2016, Atmos. Chem. Phys., 19, 9181-9208, doi:10.5194/acp-19-9181-2019. | Atmospheric Composition, RSP | |
| Handwerger, A., E. Fielding, M. Huang, G.L. Bennett, C. Liang, and W.H. Schulz (2019), Widespread Initiation, Reactivation, and Acceleration of Landslides in the Northern California Coast Ranges due to Extreme Rainfall, J. Geophys. Res., 124, 1782-1797, doi:10.1029/2019JF005035. | ESI | |
| Mishchenko, M.I., M.A. Yurkin, and B. Cairns (2019), Scattering of a damped inhomogeneous plane wave by a particle in a weakly absorbing medium, OSA Continuum, 2, 2362-2368, doi:10.1364/OSAC.2.002362. | RSP | |
| Liang, Q., S. Strahan, and E. Fleming (2017), Concerns for ozone recovery, Science, 358, 1257-1258, doi:10.1126/science.aaq0145. | MAP, Atmospheric Composition, ACMAP, UARP | |
| Rigby, M., S. Park, T. Saito, L.M. Western, A.L. Redington, X. Fang, S. Henne, A.J. Manning, R.G. Prinn, G.S. Dutton, P.J. Fraser, A.L. Ganesan, B.D. Hall, C.M. Harth, J. Kim, K.-R. Kim, P.B. Krummel, T. Lee, S. Li, Q. Liang, M.F. Lunt, S.A. Montzka, J. Mühle, S. O’Doherty, M.-K. Park, S. Reimann, P.K. Salameh, P. Simmonds, R.L. Tunnicliffe, R.F. Weiss, Y. Yokouchi, and D. Young (2019), Increase in CFC-11 emissions from eastern China based on atmospheric observations, Nature, doi:10.1038/s41586-019-1193-4. | MAP, Atmospheric Composition, ACMAP, UARP | |
| Zell, E., J. Engel-Cox, R. Eckman, and P. Stackhouse (2009), Application of Satellite Sensor Data and Models for Energy Management, IEEE Journal Of Selected Topics In Applied Earth Observations And Remote Sensing, 1-13, doi:10.1109/JSTARS.2008.2001142. | ASP |