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
Behrenfeld, M.J., R.H. Moore, C.A. Hostetler, J. Graff, P. Gaube, L.M. Russell, G. Chen, S.C. Doney, S. Giovannoni, H. Liu, C. Proctor, L.M. Bolaños, N. Baetge, C. Davie-Martin, T.K. Westberry, T.S. Bates, T.G. Bell, K.D. Bidle, E.S. Boss, S.D. Brooks, B. Cairns, C. Carlson, K. Halsey, E.L. Harvey, C. Hu, L. Karp-Boss, M. Kleb, S. Menden-Deuer, F. Morison, P.K. Quinn, A.J. Scarino, B. Anderson, J. Chowdhary, E. Crosbie, R. Ferrare, J.W. Hair, Y. Hu, S. Janz, J. Redemann, E. Saltzman, M. Shook, D.A. Siegel, A. Wisthaler, M.Y. Martin, and L. Ziemba (2019), The North Atlantic Aerosol and Marine Ecosystem Study (NAAMES): Science Motive and Mission Overview, Front. Mar. Sci., 6, 122, doi:10.3389/fmars.2019.00122.
Toon, O.B., H. Maring, J. Dibb, R. Ferrare, D.J. Jacob, J. Eric, et al. (2020), Planning, implementation and scientific goals of the Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Surveys (SEAC4RS) field mission.
Leblanc, T., and I.S. McDermid (2008), Accuracy of Raman lidar water vapor calibration and its applicability to long-term measurements, Appl. Opt., 47, 5592-5603.
Leblanc, T., I.S. McDermid, and T.D. Walsh (2012), Ground-based water vapor raman lidar measurements up to the upper troposphere and lower stratosphere for long-term monitoring, Atmos. Meas. Tech., 5, 17-36, doi:10.5194/amt-5-17-2012.
Leblanc, T., R.J. Sica, J.A.E. van Gijsel, A. Haefele, G. Payen, and G. Liberti (2016), Proposed standardized definitions for vertical resolution and uncertainty in the NDACC lidar ozone and temperature algorithms – Part 3: Temperature uncertainty budget, Atmos. Meas. Tech., 9, 4079-4101, doi:10.5194/amt-9-4079-2016.
Leblanc, T., R.J. Sica, J.A.E. van Gijsel, S. Godin-Beekmann, A. Haefele, T. Trickl, G. Payen, and G. Liberti (2016), Proposed standardized definitions for vertical resolution and uncertainty in the NDACC lidar ozone and temperature algorithms – Part 2: Ozone DIAL uncertainty budget, Atmos. Meas. Tech., 9, 4051-4078, doi:10.5194/amt-9-4051-2016.
Leblanc, T., R.J. Sica, J.A.E. van Gijsel, S. Godin-Beekmann, A. Haefele, T. Trickl, G. Payen, and F. Gabarrot (2016), Proposed standardized definitions for vertical resolution and uncertainty in the NDACC lidar ozone and temperature algorithms – Part 1: Vertical resolution, Atmos. Meas. Tech., 9, 4029-4049, doi:10.5194/amt-9-4029-2016.
Chanl, K.R., J. Dean_Day, T.P. Bui, and S.W. Bowen (1998), Turbulence measurementsby the DC-8 meteorological measurement system, Geophys. Res. Lett., 25, 1355-1358. TCP
Wineteer, A., H.S. Torres, and E. Rodriguez (2020), On the Surface Current Measurement Capabilities of Spaceborne Doppler Scatterometry, Geophys. Res. Lett., 47, doi:10.1029/2020GL090116. POP
Geerts, B., Z. Wang, C. Grasmick, X. Jing, and J. Yang (2020), Interactions between a Nocturnal MCS and the Stable Boundary Layer as Observed by an Airborne Compact Raman Lidar during PECAN GUO LIN Department of Atmospheric and Oceanic Sciences, and Laboratory for Atmospheric and Space Physics, University of Colorado, Mon. Wea. Rev., 147, 3169-3189, doi:10.1175/MWR-D-18-0388.1. Atmospheric Composition, ADP
Wu, D., Z. Wang, P. Wechsler, N. Mahon, Min, Deng, B. Glover, M. Burkhart, W. Kuestner, and B. Heesen (2016), Airborne compact rotational Raman lidar for temperature measurement, Optics Express, 24, A1210, doi:10.1364/OE.24.0A1210.
Viciani, S., A. Montori, A. Chiarugi, and F. D’Amato (2020), A Portable Quantum Cascade Laser Spectrometer for Atmospheric Measurements of Carbon Monoxide, Sensors, 18, 2380-1-2380-18, doi:10.3390/s18072380. ACMAP
Huang, X., X. Chen, and Q. Yue (2019), Band‐by‐Band Contributions to the Longwave Cloud Radiative Feedbacks, Geophys. Res. Lett., 46, 6998-7006, doi:10.1029/2019GL083466.
Guha, A., S. Chatterjee, T. Oommen, K.V. Kumar, and S.K. Roy (2020), Synergistic use of ASTER, L-band ALOS PALSAR, and Hyperspectral AVIRIS-NG data for exploration of lode type gold deposit-a study in Hutti Maski Schist Belt, India., Ore Geology Reviews, doi:10.1016/j.oregeorev.2020.103818. ESI
Dai, C., I.M. Howat, J.T. Freymueller, S. Vijay, and Y. Jia (2020), Characterization of the 2008 Phreatomagmatic Eruption of Okmok From ArcticDEM and InSAR: Deposition, Erosion, and Deformation, J. Geophys. Res..
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
Carlson, G., M. Shirzaei, C. Ojha, and S. Werth (2020), Subsidence‐Derived Volumetric Strain Models for Mapping Extensional Fissures and Constraining Rock Mechanical Properties in the San Joaquin Valley, California, J. Geophys. Res., 125, e2020JB019980, doi:10.1029/2020JB019980. ESI
Rodríguez, E., A. Wineteer, D. Perkovic-Martin, T. Gál, S. Anderson, S. Zuckerman, J. Stear, and X. Yang (2020), Ka-Band Doppler Scatterometry over a Loop Current Eddy, Remote Sensing, 12, 2388, doi:10.3390/rs12152388. POP
Lenain, L., and N. Pizzo (2020), The contribution of high frequency wind-generated surface waves to the Stokes drift, J. Phys. Oceanogr., doi:10.1175/JPO-D-20-0116.1. POP
Samelson, R. (2020), Turbulent universality and the drift velocity at the interface between two homogeneous fluids, Phys. Fluids, 32, doi:10.1063/5.0019733. POP