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Aeolus L2A aerosol optical properties product: standard correct algorithm and Mie correct algorithm
Aeolus carries the Atmospheric LAser Doppler INstrument (ALADIN), the first high-spectral-resolution lidar (HSRL) in space. Although ALADIN is optimized to measure winds, its two measurement channels can also be used to derive optical properties of atmospheric particles, including a direct retrieval...
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Published in: | Atmospheric measurement techniques 2021-12, Vol.14 (12), p.7851-7871 |
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container_title | Atmospheric measurement techniques |
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creator | Flament, Thomas Trapon, Dimitri Lacour, Adrien Dabas, Alain Ehlers, Frithjof Huber, Dorit |
description | Aeolus carries the Atmospheric LAser Doppler INstrument (ALADIN), the first high-spectral-resolution lidar (HSRL) in space. Although ALADIN is optimized to measure winds, its two measurement channels can also be used to derive optical properties of atmospheric particles, including a direct retrieval of the lidar ratio. |
doi_str_mv | 10.5194/amt-14-7851-2021 |
format | article |
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subjects | Aerosol optical properties Aerosols Algorithms Altitude Atmospheric lasers Atmospheric particulates Calibration Clouds Doppler sonar Dust storms Lasers Lidar Microprocessors Optical properties Optical radar Primary mirrors Remote sensing Saharan dust Stratosphere Wind Winds |
title | Aeolus L2A aerosol optical properties product: standard correct algorithm and Mie correct algorithm |
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