Elementa Science of the Anthropocene · 2018 · 35 citations · 297 references
Marine Boundary LayerOcean MonitoringEnvironmental MonitoringEngineeringOcean-atmosphere InteractionsAtmospheric ScienceRemote SensingMarine ChemistryCritical Science QuestionsOceanographic ResearchOceanographyOcean Remote SensingInterdisciplinary FrameworksEarth ScienceLong-term Synoptic Information
Earth observing systems have proven to be a unique source of long-term synoptic information on numerous physical, chemical and biological parameters on a global scale. Merging this information for integrated studies that peruse key questions about the ocean-atmosphere interface is, however, very challenging. Such studies require interdisciplinary frameworks and novel insights into ways to address the problem. We present here a perspective review on how current and emerging remote sensing technologies could help address two scientific questions within the Surface Ocean-Lower Atmosphere Study (SOLAS) science plan: (1) to what extent does upper-ocean biology affect the composition and radiative properties of the marine boundary layer; and (2) to what extent does upper-ocean turbulence drive fluxes of mass and energy at the air-sea interface. We provide a thorough review of how these questions have been addressed and discuss novel potential avenues using multiplatform space-borne missions, from visible to microwave, active and passive sensors.
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Aerosols, Cloud Microphysics, and Fractional Cloudiness
Bruce A. Albrecht · Science · 1989 · 4.9K citations
Oceanic phytoplankton, atmospheric sulphur, cloud albedo and climate
Robert J. Charlson, J. E. Lovelock, Meinrat O. Andreae et al. · Nature · 1987 · 4.4K citations
The MODIS Aerosol Algorithm, Products, and Validation
L. A. Remer, Yoram J. Kaufman, D. Tanré et al. · Journal of the Atmospheric Sciences · 2005 · 3.4K citations · Full text
Environmental Monitoring, Engineering, Atmospheric Sounding +19