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)
Tomsche, L., F. Piel, T. Mikoviny, C.J. Nielsen, H. Guo, P. Campuzano-Jost, B.A. Nault, M.K. Schueneman, J.L. Jimenez, H. Halliday, G. Diskin, J.P. DiGangi, J.B. Nowak, E.B. Wiggins, E. Gargulinski, A.J. Soja, and A. Wisthaler (2023), Measurement report: Emission factors of NH3 and NHx for wildfires and agricultural fires in the United States, Atmos. Chem. Phys., doi:10.5194/acp-23-2331-2023. TCP
Toon, O.B., D.O. Starr, E.J. Jensen, P.A. Newman, S. Platnick, M.R. Schoeberl, P.O. Wennberg, S.C. Wofsy, M.J. Kurylo, H. Maring, K.W. Jucks, M.S. Craig, M.F. Vasques, L. Pfister, K.H. Rosenlof, H.B. Selkirk, P.R. Colarco, S.R. Kawa, G.G. Mace, P. Minnis, and K.E. Pickering (2010), Planning, implementation, and first results of the Tropical Composition, Cloud and Climate Coupling Experiment (TC4), J. Geophys. Res., 115, D00J04, doi:10.1029/2009JD013073. ACMAP, RSP, TCP, UARP
Topham, T.S., G.E. Bingham, H. Latvakoski, I. Podolski, V.S. Sychev, and A. Burdakin (2015), Observational study: microgravity testing of a phase-change reference on the International Space Station, npj Microgravity, 2015, 15009, doi:10.1038/npjmgrav.2015.9. RSP
Tornow, F., A.S. Ackerman, and A.M. Fridlind (2021), Preconditioning of overcast-to-broken cloud transitions by riming in marine cold air outbreaks, Atmos. Chem. Phys., 21, 12049-12067, doi:10.5194/acp-21-12049-2021. RSP
Tornow, F., A.S. Ackerman, A.M. Fridlind, B. Cairns, E.C. Crosbie, S. Kirschler, R.H. Moore, D. Painemal, C.E. Robinson, C. Seethala, M.A. Shook, C. Voigt, E.L. Winstead, L.D. Ziemba, P. Zuidema, and A. Sorooshian (2022), Dilution of Boundary Layer Cloud Condensation Nucleus Concentrations by Free Tropospheric Entrainment During Marine Cold Air Outbreaks, Geophys. Res. Lett., 49, e2022GL09844, doi:10.1029/2022GL098444. RSP
Tornow, F., B.S. Andrew Ackerman, A.M. Fridlind, G. Tselioudis, B. Cairns, D. Painemal, and G. Elsaesser (2023), On the Impact of a Dry Intrusion Driving Cloud-Regime Transitions in a Midlatitude Cold-Air Outbreak, J. Atmos. Sci., 80, 2881-2896, doi:10.1175/JAS-D-23-0040.1. RSP
Torres, B., O. Dubovik, D. Fuertes, G. Schuster, V.E. Cachorro, T. Lapyonok, P. Goloub, L. Blarel, A. Barreto, M. Mallet, C. Toledano, and D. Tanré (2017), Advanced characterisation of aerosol size properties from measurements of spectral optical depth using the GRASP algorithm, Atmos. Meas. Tech., 10, 3743-3781, doi:10.5194/amt-10-3743-2017. Atmospheric Composition, ACMAP, RSP
Torres, O., C. Ahn, and Z. Chen (2013), Improvements to the OMI near-UV aerosol algorithm using A-train CALIOP and AIRS observations, Atmos. Meas. Tech., 6, 3257-3270, doi:10.5194/amt-6-3257-2013. Atmospheric Composition, ACMAP
Torres, O., A. Tanskanen, B. Veihelmann, C. Ahn, R. Braak, P.K. Bhartia, P. Veefkind, and P. Levelt (2007), Aerosols and surface UV products from Ozone Monitoring Instrument observations: An overview, J. Geophys. Res., 112, D24S47, doi:10.1029/2007JD008809. Atmospheric Composition, TCP
Torres, O., Z. Chen, H. Jethva, C. Ahn, S.R. Freitas, and P.K. Bhartia (2010), OMI and MODIS observations of the anomalous 2008–2009 Southern Hemisphere biomass burning seasons, Atmos. Chem. Phys., 10, 3505-3513, doi:10.5194/acp-10-3505-2010. Atmospheric Composition, ACMAP
Torres, O., P.K. Bhartia, G. Taha, H. Jethva, S. Das, P. Colarco, N. Krotkov, A. Omar, and C. Ahn (2020), Stratospheric Injection of Massive Smoke Plume From Canadian Boreal Fires in 2017 as Seen by DSCOVR‐EPIC, CALIOP, and OMPS‐LP Observations, J. Geophys. Res., 125, e2020JD032579, doi:10.1029/2020JD032579. Atmospheric Composition
Torres, O., H. Jethva, C. Ahn, G. Jaross, and D.G. Loyola (2020), TROPOMI aerosol products: evaluation and observations of synoptic-scale carbonaceous aerosol plumes during 2018–2020, Atmos. Meas. Tech., 13, 6789-6806, doi:10.5194/amt-13-6789-2020. Atmospheric Composition
Torres, O., H. Jethva, and P.K. Bhartia (2012), Retrieval of Aerosol Optical Depth above Clouds from OMI Observations: Sensitivity Analysis and Case Studies, J. Atmos. Sci., 69, 1037-1053, doi:10.1175/JAS-D-11-0130.1. Atmospheric Composition, ACMAP
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
Toth, T.D., J.R. Campbell, J.S. Reid, J.L. Tackett, M.A. Vaughan, J. Zhang, and J.W. Marquis (2018), Minimum aerosol layer detection sensitivities and their subsequent impacts on aerosol optical thickness retrievals in CALIPSO level 2 data products, Atmos. Meas. Tech., 11, 499-514, doi:10.5194/amt-11-499-2018. ACMAP
Toth, T.D., J. Zhang, J.S. Reid, and M.A. Vaughan (2019), A bulk-mass-modeling-based method for retrieving particulate matter pollution using CALIOP observations, Atmos. Meas. Tech., 12, 1739-1754, doi:10.5194/amt-12-1739-2019. ACMAP
Toth, T.D., J. Zhang, M.A. Vaughan, J.S. Reid, and J.R. Campbell (2022), Retrieving particulate matter concentrations over the contiguous United States using CALIOP observations, Atmos. Environ., 274, 118979, doi:10.1016/j.atmosenv.2022.118979. IDS, RSP
Travis, K.R., J.H. Crawford, A. Soja, E.B. Wiggins, E.M. Gargulinski, R.H. Moore, J.P. DiGangi, J.B. Nowak, C. Warneke, C.C. Womack, M.A. Robinson, J.M. Katich, M. Coggon, A.W. Rollins, J. Gilman, J.E. Dibb, T.F. Hanisco, G.M. Wolfe, J. Liao, J.M. St. Clair, E.C. Apel, R.S. Hornbrook, A.J. Hills, J.L. Jimenez, P. Campuzano-Jost, D.A. Day, H. Guo, D. Pagonis, B.A. Nault, J.L. McCarty, A. Fried, P.S. Rickly, R.J. Yokelson, P.O. Wennberg, L. Xu, I.J. Simpson, D.R. Blake, A. Lamplugh, A.E. Perring, and A.E. Perring (2023), Emission Factors for Crop Residue and Prescribed Fires in the Eastern US during FIREX-AQ, J. Geophys. Res., 128, e2023JD039309, doi:10.1029/2023JD039309. TCP
Travis, K.R., and D.J. Jacob (2019), Systematic bias in evaluating chemical transport models with maximum daily 8 h average (MDA8) surface ozone for air quality applications: a case study with GEOS-Chem v9.02, Geosci. Model. Dev., 12, 3641-3648, doi:10.5194/gmd-12-3641-2019. ACMAP
Travis, K.R., D.J. Jacob, J.A. Fisher, P.S. Kim, E.A. Marais, L. Zhu, K. Yu, C.C. Miller, R.M. Yantosca, M.P. Sulprizio, A.M. Thompson, P.O. Wennberg, J.D. Crounse, J.M. St. Clair, R.C. Cohen, J.L. Laughner, J.E. Dibb, S.R. Hall, K. Ullmann, G.M. Wolfe, I.B. Pollack, J. Peischl, J.A. Neuman, and X. Zhou (2016), Why do models overestimate surface ozone in the Southeast United States?, Atmos. Chem. Phys., 16, 13561-13577, doi:10.5194/acp-16-13561-2016. Atmospheric Composition, TCP