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
Pulvirenti, F., Z. Liu, P. Lundgren, A. Gonzalez-Ortega, and M. Aloisi (2021), New Fault Slip Distribution for the 2010 Mw 7.2 El Mayor Cucapah Earthquake Based on Realistic 3D Finite Element Inversions of Coseismic Displacements Using Space Geodetic Data, J. Geophys. Res., 126, e2020JB020016, doi:10.1029/2020JB020016. ESI
Luo, Y., and Z. Liu (2021), Fault zone heterogeneities explain depth- dependent pattern and evolution of slow earthquakes in Cascadia, Nature, doi:10.1038/s41467-021-22232-x. ESI
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
Liu, N., C. Liu, and L. Hayden (2020), Climatology and Detection of Overshooting Convection From 4 Years of GPM Precipitation Radar and Passive Microwave Observations, J. Geophys. Res., 125, e2019JD032003, doi:10.1029/2019JD032003. ACMAP, ADP
Handwerger, A.L., A.M. Booth, M.-H. Huang, and E.J. Fielding (2021), Inferring the Subsurface Geometry and Strength of Slow-Moving Landslides Using 3-D Velocity Measurements From the NASA/JPL UAVSAR, J. Geophys. Res., doi:https://doi.org/10.1029/2020JF005898. ESI
Dille, A., F. Kervyn, A.L. Handwerger, N. d’Oreye, D. Derauw, T.M. Bibentyo, S. Samsonov, J.-P. Malet, M. Kervyn, and O. Dewitte (2021), When image correlation is needed: Unravelling the complex dynamics of a slow-moving landslide in the tropics with dense radar and optical time series, Remote Sensing of Environment, 258, 112402, doi:10.1016/j.rse.2021.112402. ESI
Girona, T., V. Realmuto, and P. Lundgren (2021), Large-scale thermal unrest of volcanoes for years prior to eruption, Nature, doi:10.1038/s41561-021-00705-4. ESI
Lundgren, P., T. Girona, M.G. Bato, V. Realmuto, S. Samsonov, C. Cardona, L. Franco, E. Gurrola, and M. Aivazis (2020), The dynamics of large silicic systems from satellite remote sensing observations: the intriguing case of Domuyo volcano, Argentina, Scientific Reports, 10, 11642, doi:10.1038/s41598-020-67982-8. ESI
Kumar, C., S. Chatterjee, T. Oommen, and A. Guha (2021), New effective spectral matching measures for hyperspectral data analysis, International Journal of Remote Sensing, 42, 11, doi:10.1080/01431161.2021.1890265. ESI
Kumar, C., S. Chatterjee, T. Oommen, and A. Guha (2021), New effective spectral matching measures for hyperspectral data analysis, International Journal of Remote Sensing, 42, 11, doi:10.1080/01431161.2021.1890265. ESI
Safieddine, S., A.C. Parracho, M. George, F. Aires, V. Pellet, L. Clarisse, S. Whitburn, O. Lezeaux, J.-N. Thépaut, H. Hersbach, G. Radnoti, F. Goettsche, M. Martin, M. Doutriaux-Boucher, D. Coppens, T. August, D.K. Zhou, and C. Clerbaux (2021), Artificial Neural Networks to Retrieve Land and Sea Skin Temperature from IASI, doi:10.3390/rs12172777.
Zhou, D.K., A.M. Larar, X. Liu, A.M. Noe, G.S. Diskin, A.J. Soja, G.T. Arnold, and M.J. McGill (2021), Wildfire-Induced CO Plume Observations From NAST-I During the FIREX-AQ Field Campaign, IEEE Journal Of Selected Topics In Applied Earth Observations And Remote Sensing, 14, 2901-2910, doi:10.1109/JSTARS.2021.3059855.
Zhou, D.K., A.M. Larar, and X. Liu (2021), Surface Skin Temperature and Its Trend Observations From IASI on Board MetOp Satellites, IEEE Journal Of Selected Topics In Applied Earth Observations And Remote Sensing, 14, 1665-1675, doi:10.1109/JSTARS.2020.3046421.
Nair, A.A., F. Yu, P. Campuzano-Jost, P.J. DeMott, E.J.T. Levin, J.L. Jimenez, and A.J. Beyersdorf (2021), Machine learning uncovers aerosol size information from chemistry and meteorology to quantify potential cloud-forming particles, Geophys. Res. Lett., doi:10.1029/2021GL094133. TCP
Schueneman, M.K., B.A. Nault, P. Campuzano-Jost, D.S. Jo, D.A. Day, J.C. Schroder, B.B. Palm, A. Hodzic, J.E. Dibb, and J.L. Jimenez (2021), Aerosol pH Indicator and Organosulfate Detectability from Aerosol Mass Spectrometry Measurements, Atmos. Meas. Tech., doi:10.5194/amt-2020-339. TCP
Naus, S., S.A. Montzka, P.K. Patra, and M.C. Krol (2021), A 3D-model inversion of methyl chloroform to constrain the atmospheric oxidative capacity, Atmos. Chem. Phys., doi:10.5194/acp-2020-624. TCP
Bates, K.H., D.J. Jacob, S. Wang, R.S. Hornbrook, E.C. Apel, M.J. Kim, D.B. Millet, K.C. Wells, X. Chen, J.F. Brewer, E.A. Ray, R. Commane, G.S. Diskin, and S.C. Wofsy (2021), The Global Budget of Atmospheric Methanol: New Constraints on Secondary, Oceanic, and Terrestrial Sources, J. Geophys. Res., 126, doi:10.1029/2020JD033439. Atmospheric Composition, TCP
Liu, S., C.-C. Liu, K.D. Froyd, G.P. Schill, D.M. Murphy, T.P. Bui, J.M. Dean-Day, B. Weinzierl, M. Dollner, G.S. Diskin, G. Chen, and R.-S. Gao (2021), Sea spray aerosol concentration modulated by sea surface temperature, Proc. Natl. Acad. Sci., doi:10.1073/pnas.2020583118. TCP
Jin, Y., R.F. Keeling, E.J. Morgan, E. Ray, N.C. Parazoo, and B.B. Stephens (2021), A mass-weighted isentropic coordinate for mapping chemical tracers and computing atmospheric inventories, Atmos. Chem. Phys., 21, 217-238, doi:10.5194/acp-21-217-2021. TCP
Kulawik, S.S., J.R. Worden, V.H. Payne, D. Fu, S.C. Wofsy, K. McKain, C. Sweeney, B.C. Daube, A. Lipton, I. Polonsky, Y. He, K.E. Cady-Pereira, E.J. Dlugokencky, D.J. Jacob, and Y. Yin (2021), Evaluation of single-footprint AIRS CH4 profile retrieval uncertainties using aircraft profile measurements, Atmos. Meas. Tech., 14, 335-354, doi:10.5194/amt-14-335-2021. TCP