Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season

International audience The role of polar stratospheric clouds in polar ozone loss has been well documented. The CALIPSO satellite mission offers a new opportunity to characterize PSCs on spatial and temporal scales previously impossible. A PSC detection algorithm based on a single wavelength thresho...

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Main Authors: Pitts, M. C., Thomason, L. W., Poole, L. R., Winker, D. M.
Other Authors: NASA Headquarters, Science Systems and Applications, Inc. Lanham (SSAI)
Format: Article in Journal/Newspaper
Language:English
Published: HAL CCSD 2007
Subjects:
Online Access:https://hal.science/hal-00296352
https://hal.science/hal-00296352/document
https://hal.science/hal-00296352/file/acp-7-5207-2007.pdf
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spelling ftccsdartic:oai:HAL:hal-00296352v1 2023-11-12T04:05:20+01:00 Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season Pitts, M. C. Thomason, L. W. Poole, L. R. Winker, D. M. NASA Headquarters Science Systems and Applications, Inc. Lanham (SSAI) 2007-10-10 https://hal.science/hal-00296352 https://hal.science/hal-00296352/document https://hal.science/hal-00296352/file/acp-7-5207-2007.pdf en eng HAL CCSD European Geosciences Union hal-00296352 https://hal.science/hal-00296352 https://hal.science/hal-00296352/document https://hal.science/hal-00296352/file/acp-7-5207-2007.pdf info:eu-repo/semantics/OpenAccess ISSN: 1680-7316 EISSN: 1680-7324 Atmospheric Chemistry and Physics https://hal.science/hal-00296352 Atmospheric Chemistry and Physics, 2007, 7 (19), pp.5207-5228 [SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmosphere info:eu-repo/semantics/article Journal articles 2007 ftccsdartic 2023-10-21T23:16:49Z International audience The role of polar stratospheric clouds in polar ozone loss has been well documented. The CALIPSO satellite mission offers a new opportunity to characterize PSCs on spatial and temporal scales previously impossible. A PSC detection algorithm based on a single wavelength threshold approach has been developed for CALIPSO. The method appears to accurately detect PSCs of all opacities, including tenuous clouds, with a very low rate of false positives and few missed clouds. We applied the algorithm to CALIOP data acquired during the 2006 Antarctic winter season from 13 June through 31 October. The spatial and temporal distribution of CALIPSO PSC observations is illustrated with weekly maps of PSC occurrence. The evolution of the 2006 PSC season is depicted by time series of daily PSC frequency as a function of altitude. Comparisons with "virtual" solar occultation data indicate that CALIPSO provides a different view of the PSC season than attained with previous solar occultation satellites. Measurement-based time series of PSC areal coverage and vertically-integrated PSC volume are computed from the CALIOP data. The observed area covered with PSCs is significantly smaller than would be inferred from the commonly used temperature-based proxy T NAT but is similar in magnitude to that inferred from T STS . The potential of CALIOP measurements for investigating PSC composition is illustrated using combinations of lidar backscatter and volume depolarization for two CALIPSO PSC scenes. Article in Journal/Newspaper Antarc* Antarctic Archive ouverte HAL (Hyper Article en Ligne, CCSD - Centre pour la Communication Scientifique Directe) Antarctic
institution Open Polar
collection Archive ouverte HAL (Hyper Article en Ligne, CCSD - Centre pour la Communication Scientifique Directe)
op_collection_id ftccsdartic
language English
topic [SDU.OCEAN]Sciences of the Universe [physics]/Ocean
Atmosphere
spellingShingle [SDU.OCEAN]Sciences of the Universe [physics]/Ocean
Atmosphere
Pitts, M. C.
Thomason, L. W.
Poole, L. R.
Winker, D. M.
Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season
topic_facet [SDU.OCEAN]Sciences of the Universe [physics]/Ocean
Atmosphere
description International audience The role of polar stratospheric clouds in polar ozone loss has been well documented. The CALIPSO satellite mission offers a new opportunity to characterize PSCs on spatial and temporal scales previously impossible. A PSC detection algorithm based on a single wavelength threshold approach has been developed for CALIPSO. The method appears to accurately detect PSCs of all opacities, including tenuous clouds, with a very low rate of false positives and few missed clouds. We applied the algorithm to CALIOP data acquired during the 2006 Antarctic winter season from 13 June through 31 October. The spatial and temporal distribution of CALIPSO PSC observations is illustrated with weekly maps of PSC occurrence. The evolution of the 2006 PSC season is depicted by time series of daily PSC frequency as a function of altitude. Comparisons with "virtual" solar occultation data indicate that CALIPSO provides a different view of the PSC season than attained with previous solar occultation satellites. Measurement-based time series of PSC areal coverage and vertically-integrated PSC volume are computed from the CALIOP data. The observed area covered with PSCs is significantly smaller than would be inferred from the commonly used temperature-based proxy T NAT but is similar in magnitude to that inferred from T STS . The potential of CALIOP measurements for investigating PSC composition is illustrated using combinations of lidar backscatter and volume depolarization for two CALIPSO PSC scenes.
author2 NASA Headquarters
Science Systems and Applications, Inc. Lanham (SSAI)
format Article in Journal/Newspaper
author Pitts, M. C.
Thomason, L. W.
Poole, L. R.
Winker, D. M.
author_facet Pitts, M. C.
Thomason, L. W.
Poole, L. R.
Winker, D. M.
author_sort Pitts, M. C.
title Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season
title_short Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season
title_full Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season
title_fullStr Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season
title_full_unstemmed Characterization of Polar Stratospheric Clouds with spaceborne lidar: CALIPSO and the 2006 Antarctic season
title_sort characterization of polar stratospheric clouds with spaceborne lidar: calipso and the 2006 antarctic season
publisher HAL CCSD
publishDate 2007
url https://hal.science/hal-00296352
https://hal.science/hal-00296352/document
https://hal.science/hal-00296352/file/acp-7-5207-2007.pdf
geographic Antarctic
geographic_facet Antarctic
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_source ISSN: 1680-7316
EISSN: 1680-7324
Atmospheric Chemistry and Physics
https://hal.science/hal-00296352
Atmospheric Chemistry and Physics, 2007, 7 (19), pp.5207-5228
op_relation hal-00296352
https://hal.science/hal-00296352
https://hal.science/hal-00296352/document
https://hal.science/hal-00296352/file/acp-7-5207-2007.pdf
op_rights info:eu-repo/semantics/OpenAccess
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