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
Tang, W., A.F. Arellano, B. Gaubert, K. Miyazaki, and H.M. Worden (2019), Satellite data reveal a common combustion emission pathway for major cities in China, Atmos. Chem. Phys., 19, 4269-4288, doi:10.5194/acp-19-4269-2019. Atmospheric Composition, TCP
Jiang, Z., B.C. McDonald, H. Worden, J.R. Worden, K. Miyazaki, Z. Qu, D.K. Henze, D.B.A. Jones, A.F. Arellano, E.V. Fischer, L. Zhu, and K.F. Boersma (2018), Unexpected slowdown of US pollutant emission reduction in the past decade, Proc. Natl. Acad. Sci., 201801191, doi:10.1073/pnas.1801191115. Atmospheric Composition, TCP
Hedelius, J.K., T.-L. He, D.B.A. Jones, B.C. Baier, R.R. Buchholz, M. De Maziere, N.M. Deutscher, M.K. Dubey, D.G. Feist, D.W.T. Griffith, F. Hase, L.T. Iraci, P. Jeseck, M. Kiel, R. Kivi, C. Liu, I. Morino, J. Notholt, Y.-S. Oh, H. Ohyama, D.F. Pollard, M. Rettinger, S. Roche, C.M. Roehl, M. Schneider, K. Shiomi, K. Strong, R. Sussmann, C. Sweeney, Y. Te, O. Uchino, V.A. Velazco, W. Wang, T. Warneke, P.O. Wennberg, H.M. Worden, and D. Wunch (2019), Evaluation of MOPITT Version 7 joint TIR-NIR X-CO retrievals with TCCON, Atmos. Meas. Tech., 12, 5547-5572, doi:10.5194/amt-12-5547-2019. Atmospheric Composition, TCP
Tang, W., H.M. Worden, M.N. Deeter, D.P. Edwards, L.K. Emmons, S. Martínez-Alonso, B. Gaubert, R.R. Buchholz, G.S. Diskin, R.R. Dickerson, X. Ren, H. He, and Y. Kondo (2020), Assessing Measurements of Pollution in the Troposphere (MOPITT) carbon monoxide retrievals over urban versus non-urban regions, Atmos. Meas. Tech., 13, 1337-1356, doi:10.5194/amt-13-1337-2020. TCP
Hannun, R.A., G.M. Wolfe, S.R. Kawa, T.F. Hanisco, P.A. Newman, J. Alfieri, J.D. Barrick, K. Clark, J.P. DiGangi, G.S. Diskin, J.S. King, W.P. Kustas, B. Mitra, A. Noormets, J.B. Nowak, K.L. Thornhill, and R. Vargas (2020), Spatial heterogeneity in CO2, CH4, and energy fluxes: insights from airborne eddy covariance measurements over the Mid-Atlantic region, Environmental Research Letters., 15, 035008, doi:10.1088/1748-9326/ab7391. TCP
Thompson, A.M., R.M. Stauffer, T.P. Boyle, D.E. Kollonige, K. Miyazaki, M. Tzortziou, J.R. Herman, N. Abuhassan, C.E. Jordan, and B.T. Lamb (2019), Comparison of Near‐Surface NO2 Pollution With Pandora Total Column NO2 During the Korea‐United States Ocean Color (KORUS OC) Campaign, J. Geophys. Res., 124, doi:10.1029/2019JD030765. TCP
Liu, J., K.W. Bowman, and M. Lee (2016), Comparison between the Local Ensemble Transform Kalman Filter (LETKF) and 4D-Var in atmospheric CO2 flux inversion with the Goddard Earth Observing System-Chem model and the observation impact diagnostics from the LETKF, J. Geophys. Res., 121, 13,066-13,087, doi:10.1002/2016JD025100. Atmospheric Composition, TCP, CCEP
Liu, J., and K. Bowman (2016), A method for independent validation of surface fluxes from atmospheric inversion: Application to CO2, Geophys. Res. Lett., 43, 3502-3508, doi:10.1002/2016GL067828. TCP, CCEP
Cuchiara, G.C., A. Fried, M.C. Barth, M. Bela, C.R. Homeyer, B. Gaubert, J. Walega, P. Weibring, D. Richter, P. Wennberg, J. Crounse, M. Kim, G. Diskin, T.F. Hanisco, G.M. Wolfe, A. Beyersdorf, J. Peischl, I.B. Pollack, J.M. St. Clair, S. Woods, S. Tanelli, T.V. Bui, J. Dean‐Day, L.G. Huey, and N. Heath (2020), Vertical Transport, Entrainment, and Scavenging Processes Affecting Trace Gases in a Modeled and Observed SEAC4RS Case Study, J. Geophys. Res., 125, doi:10.1029/2019JD031957. Atmospheric Composition, TCP, UARP
(2020), Cropland carbon uptake delayed and reduced by 2019 Midwest floods, AGU Advances, 1, 1-15, doi:10.1029/2019AV000140. Atmospheric Composition, TCP, CCEP
Feng, S., T. Lauvaux, K.J. Davis, K. Keller, Y. Zhou, and C. Williams (2019), Seasonal characteristics of model uncertainties from biogenic fluxes, transport, and large‐scale boundary inflow in atmospheric CO2 simulations over North America, J. Geophys. Res., 124, 14325-, doi:10.1029/2019JD031165. TCP, CCEP
Philip, S., M.S. Johnson, C. Potter, V. Genovesse, D.F. Baker, K.D. Haynes, D.K. Henze, J. Liu, and B. Poulter (2019), Prior biosphere model impact on global terrestrial CO2 fluxes estimated from OCO-2 retrievals, Atmos. Chem. Phys., 19, 13267-13287, doi:10.5194/acp-19-13267-2019. Atmospheric Composition, TCP, CCEP
(2020), Cropland carbon uptake delayed and reduced by 2019 Midwest floods, AGU Advances, 1, 1-15, doi:10.1029/2019AV000140. Atmospheric Composition, TCP, CCEP
Laughner, J.L., and R.C. Cohen (2019), Direct observation of changing NOx lifetime in North American cities, Science, 366, 723-727, doi:10.1126/science.aax6832. ACMAP, TCP
Hammer, M.S., R.V. Martin, A. van Donkelaar, V. Buchard, O. Torres, D.A. Ridley, and R.J.D. Spurr (2016), Interpreting the ultraviolet aerosol index observed with the OMI satellite instrument to understand absorption by organic aerosols: implications for atmospheric oxidation and direct radiative effects, Atmos. Chem. Phys., 16, 2507-2523, doi:10.5194/acp-16-2507-2016. Atmospheric Composition, TCP
Zhu, Q., J.L. Laughner, and R.C. Cohen (2019), Lightning NO2 simulation over the contiguous US and its effects on satellite NO2 retrievals, Atmos. Chem. Phys., 19, 13067-13078, doi:10.5194/acp-19-13067-2019. ACMAP, TCP
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
Karman, T., I.E. Gordon, A. van der Avoird, Y.I. Baranov, C. Boulet, B.J. Drouinf, G.C. Groenenboom, M. Gustafssong, J.-M. Hartmannh, R.L. Kurucz, L.S. Rothman, K. Sun, K. Sungf, R. Thalmani, H. Tranl, E.H. Wishnowm, R. Wordsworthn, A.A. Vigasino, R. Volkameri, and W.J. van der Zande (2019), Update of the HITRAN collision-induced absorption section T a,b,c a,⁎ b d,1 e, Icarus, 328, 160-175, doi:10.1016/j.icarus.2019.02.034. Atmospheric Composition, TCP
Ilyushin, V., I. Armieieva, O. Dorovskaya, I. Krapivin, E. Alekseev, M. Tudorie, R.A. Motienko, L. Margulès, O. Pirali, E.S. Bekhtereva, S. Bauerecker, C. Maul, C. Sydow, and B.J. Drouin (2019), The torsional fundamental band and high-J rotational spectra of the ground, first and second excited torsional states of acetone, Journal of Molecular Spectroscopy, 363, 111169, doi:10.1016/j.jms.2019.06.008. Atmospheric Composition, TCP
Sung, K., E.H. Wishnow, T.J. Crawford, D. Nemchick, B.J. Drouin, G.C. Toon, S. Yu, V.H. Payne, and J.H. Jiang (2019), FTS measurements of O2 collision-induced absorption in the 565–700 nm region using a high pressure gas absorption cell, J. Quant. Spectrosc. Radiat. Transfer, 235, 232-243, doi:10.1016/j.jqsrt.2019.06.016. Atmospheric Composition, TCP