A208-05
The PACE-MAPP Algorithm: Coupled Ocean/Aerosol Products

Wednesday, 16 December 2020: 04:30
Virtual
Snorre Stamnes1, James Allen2, Sharon P Burton1, Brian Cairns3, Eduard Chemyakin4, Jacek Chowdhary5, Bastiaan van Diedenhoven6, Richard Anthony Ferrare1, Otto P Hasekamp7, Chris A Hostetler1, Johnathan W Hair1, Yongxiang Hu1 and Xu Liu1, (1)NASA Langley Research Center, Hampton, VA, United States, (2)University of California Santa Barbara, Santa Barbara, CA, United States, (3)NASA Goddard Institute for Space Studies, New York, NY, United States, (4)Science Systems and Applications, Inc. Hampton, Hampton, VA, United States, (5)Columbia University in the City of New York, New York, NY, United States, (6)Columbia University, New York, United States, (7)SRON Netherlands Institute for Space Research, Utrecht, Netherlands
Abstract:
The PACE-MAPP algorithm, under development for combined SPEXone, HARP2 and OCI observations from NASA’s future Plankton, Aerosol, Cloud, ocean Ecosystem (PACE) satellite mission, directly inverts the coupled atmosphere-ocean system to retrieve aerosol optical and microphysical properties and ocean optical properties simultaneously. PACE-MAPP thus retrieves the spectrally-resolved inherent optical properties of the Earth’s waters: the spectral particulate scattering coefficient, , the spectral absorption coefficient for particulates and color-dissolved matter, , and the spectral particulate backscatter efficiency, . From these three spectrally-resolved components, we can derive the spectral particulate hemispherical backscattering coefficient and the spectral diffuse attenuation coefficient . Direct comparisons of and are made to collocated High-Spectral Resolution Lidar (HSRL) in-water measurements. The PACE-MAPP algorithm was tested using PACE-analog datasets collected by Research Scanning Polarimeter (RSP) observations during the NASA NAAMES (The North Atlantic Aerosols and Marine Ecosystems Study) and SABOR (Ship-Aircraft Bio-Optical Research) airborne campaigns, both of which also include ship-based in situ measurements.