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)
Orkin, V.L., V.G. Khamaganov, S.N. Kozlov, and M.J. Kurylo (2013), Measurements of Rate Constants for the OH Reactions with Bromoform (CHBr3), CHBr2Cl, CHBrCl2, and Epichlorohydrin (C3H5ClO), J. Phys. Chem. A, 117, 3809-3818, doi:10.1021/jp3128753. UARP
Orkin, V.L., G.A. Poskrebyshev, and M.J. Kurylo (2011), Rate Constants for the Reactions between OH and Perfluorinated Alkenes, J. Phys. Chem. A, 115, 6568-6574, doi:10.1021/jp201663j. UARP
Orkin, V.L., L.E. Martynova, and A.N. Ilichev (2010), High-Accuracy Measurements of OH Reaction Rate Constants and IR Absorption Spectra: CH2=CF-CF3 and trans-CHF=CH-CF3, J. Phys. Chem. A, 114, 5967-5979, doi:10.1021/jp9092817. UARP
Orkin, V.L., L.E. Martynova, and M.J. Kurylo (2014), Photochemical Properties of trans-1-Chloro-3,3,3-trifluoropropene (trans-CHClHCHCF3): OH Reaction Rate Constant, UV and IR Absorption Spectra, Global Warming Potential, and Ozone Depletion Potential, J. Phys. Chem. A, 118, 5263-5271, doi:10.1021/jp5018949. UARP
Orkin, V.L., L.E. Martynova, and M.J. Kurylo (2017), Photochemical Properties of CH2HCH-CFCl-CF2Br (4-Bromo-3-chloro3,4,4-trifluoro-1-butene) and CH3‑O-CH(CF3)2 (Methyl Hexafluoroisopropyl Ether): OH Reaction Rate Constants and UV and IR Absorption Spectra, J. Phys. Chem. A, doi:10.1021/acs.jpca.7b04256. UARP
Orkin, V.L., M.J. Kurylo, and E.L. Fleming (2020), Atmospheric Lifetimes of Halogenated Hydrocarbons: Improved Estimations From an Analysis of Modeling Results, J. Geophys. Res., 125, 1-13, doi:10.1029/2019JD032243. UARP
Orkin, V.L., R.E. Huie, and M.J. Kurylo (1997), Rate Constants for the Reactions of OH with HFC-245cb (CH3CF2CF3) and Some Fluoroalkenes (CH2CHCF3, CH2CFCF3, CF2CFCF3, and CF2CF2), J. Phys. Chem. A, 101, 9118-9124. UARP
Orkin, V.L., V.G. Khamaganov, and A.G. Guschin (2014), Photochemical Properties of Hydrofluoroethers CH3OCHF2, CH3OCF3, and CHF2OCH2CF3: Reactivity toward OH, IR Absorption Cross Sections, Atmospheric Lifetimes, and Global Warming Potentials, J. Phys. Chem. A, 118, 10770-10777, doi:10.1021/jp506377w. UARP
Orkin, O.V., V.G. Khamaganov, and M.J. Kurylo (2012), High Accuracy Measurements of OH Reaction Rate Constants and IR Absorption Spectra: Substituted 2-Propanols, J. Phys. Chem. A, 116, 6188-6198, doi:10.1021/jp211534n. UARP
Orkin, V.L., V.G. Khamaganov, and M.J. Kurylo (2023), Experimental kinetic study of the reactions between OH radicals and three 2-butenes over the temperature range 220-370 K and pressure range 0.67-40 kPa (5-300 Torr), Int. J. Chem. Kinet., 55, 221-237, doi:10.1002/kin.21630. UARP
Orlando, J.J., C.A. Piety, J.M. Nicovich, M.L. McKee, and P.H. Wine (2005), Rates and Mechanisms for the Reactions of Chlorine Atoms with Iodoethane and 2-Iodopropane, J. Phys. Chem. A, 109, 6659-6675, doi:10.1021/jp051715x. UARP
Ortega, I., R.R. Buchholz, E.G. Hall, D.F. Hurst, A.F. Jordan, and J.W. Hannigan (2019), Tropospheric water vapor profiles obtained with FTIR: comparison with balloon-borne frost point hygrometers and influence on trace gas retrievals, Atmos. Meas. Tech., 12, 873-890, doi:10.5194/amt-12-873-2019. Atmospheric Composition, TCP
Ortland, D.A., and M.J. Alexander (2011), Solutions to the Vertical Structure Equation for Simple Models of the Tropical Troposphere, J. Atmos. Sci., 68, 2061-2072, doi:10.1175/2011JAS3719.1. ACMAP
Ortland, D.A., and M.J. Alexander (2014), The Residual-Mean Circulation in the Tropical Tropopause Layer Driven by Tropical Waves, J. Atmos. Sci., 71, 1305-1322, doi:10.1175/JAS-D-13-0100.1. ACMAP
Ortland, D.A., M.J. Alexander, and A.W. Grimsdell (2011), On the Wave Spectrum Generated by Tropical Heating, J. Atmos. Sci., 68, 2042-2060, doi:10.1175/2011JAS3718.1. ACMAP
Osborn, M.T., M.A. Kritz, K.G. Snetsinger, and G.V. Ferry (1989), SAGE II Aerosol Validation: Selected Altitude Measurements, Including Particle Micromeasure-ments, J. Geophys. Res., 94, 8367-8380.
Oshchepkov, S., A. Bril, T. Yokota, P.O. Wennberg, N.M. Deutscher, D. Wunch, G.C. Toon, Y. Yoshida, C.W. O’Dell, D. Crisp, C.E. Miller, C. Frankenberg, A. Butz, I. Aben, S. Guerlet, O. Hasekamp, H. Boesch, A. Cogan, R. Parker, D. Griffith, R. Macatangay, J. Notholt, R. Sussmann, M. Rettinger, V. Sherlock, J. Robinson, E. Kyrö, P. Heikkinen, D.G. Feist, I. Morino, N. Kadygrov, D. Belikov, S. Maksyutov, T. Matsunaga, O. Uchino, and H. Watanabe (2013), Effects of atmospheric light scattering on spectroscopic observations of greenhouse gases from space. Part 2: Algorithm intercomparison in the GOSAT data processing for CO2 retrievals over TCCON sites, J. Geophys. Res., 118, 1493-1512, doi:10.1002/jgrd.50146.
Oshio, H., Y. Yoshida, T. Matsunaga, C.H.O. (oshio.haruki, and Go. nies.jp) (2019), On the zero-level offset in the GOSAT TANSO-FTS O2 A band and the quality of solar-induced chlorophyll fluorescence (SIF): comparison of SIF between GOSAT and OCO-2, Atmos. Meas. Tech., 12, 6721-6735, doi:10.5194/amt-12-6721-2019.
Osmanoglu, B., S.A. Huang, C.A. Jones, B. Scheuchl, A. Khazendar, J. Sauber, K. Tymofyeyeva, and M.J. Jo (2023), Benefit Assessment of Commercial Synthetic Aperture Radar Observations for NASA’s Surface Deformation and Change Mission Study.The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 48, 225-232. ASP, ESI, CSP
Othman, A., M. Sultan, R. Becker, S. Alsefry, T. Alharbi, E. Gebremichael, H. Alharbi, and K. Abdelmohsen (2018), Use of Geophysical and Remote Sensing Data for Assessment of Aquifer Depletion and Related Land Deformation, Surv. Geophys., doi:10.1007/s10712-017-9458-7.