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Absorbing aerosol radiative effects in the limb-scatter viewing geometry
A. Wiacek
, R. V. Martin
, A. E. Bourassa
, N. D. Lloyd
, D. A. Degenstein
Department of Energy, Environmental & Chemical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Keyphrases
Radiance
100%
Multi-view Geometry
100%
Aerosol Radiative Forcing
100%
Absorbing Aerosols
100%
Limb Scatter
100%
Aerosol
50%
Multiple Scattering
50%
Aerosol Layers
50%
Medium Size
37%
Scattered Radiation
37%
Absorption Properties
37%
Soot
37%
Particle Size
25%
Scatterer
25%
Rayleigh Scattering
25%
Scattering Response
25%
Particle number Concentration
25%
Sulfate Aerosol
25%
Carbonaceous Aerosols
25%
Upper Troposphere
25%
OSIRIS
25%
Aerosol Species
25%
Three-order
12%
Order of Magnitude
12%
Unique Identifier
12%
Path Length
12%
Long Wavelength
12%
Aerosol Particles
12%
Unique Signatures
12%
External Information
12%
Number Concentration
12%
Mineral Dust
12%
Single Scattering
12%
Multiple Scattering Effect
12%
Particle Absorption
12%
Albedo
12%
Carbonaceous Particles
12%
Scattering Efficiency
12%
Geographic Coverage
12%
Vertical Resolution
12%
Second-order Effects
12%
Surface Albedo
12%
Mineral Dust Aerosol
12%
Soot Particles
12%
Satellite Measurements
12%
Aerosol Absorption
12%
Smoke Aerosol
12%
Soot Aerosol
12%
Scattering number
12%
Radiative Transfer Code
12%
Smoke Particles
12%
Aerosol Extinction
12%
Odin
12%
Solar Zenith Angle
12%
Aerosol Smoke
12%
3D Radiative Transfer
12%
Earth and Planetary Sciences
Smoke
100%
Absorption
100%
Rayleigh Scattering
50%
Albedo
50%
Troposphere
50%
OSIRIS
50%
Radiative Transfer
25%
Zenith Angle
25%