Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)

SCIAMACHY, the Scanning Imaging Absorption spectroMeter for Atmospheric CHartographY has provided measurements of limb-scattered solar radiation in the 220 nm to 2380 nm wavelength range since summer of 2002. Measurements in the UV spectral range are well suited for the retrieval of particle sizes o...

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Main Authors: J. P. Burrows, H. Bovensmann, G. Baumgarten, C. E. Robert, C. von Savigny
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2009
Subjects:
Online Access:https://doaj.org/article/2975645ef0c640a3909b97e7b8f0ac3f
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author J. P. Burrows
H. Bovensmann
G. Baumgarten
C. E. Robert
C. von Savigny
author_facet J. P. Burrows
H. Bovensmann
G. Baumgarten
C. E. Robert
C. von Savigny
author_sort J. P. Burrows
collection Directory of Open Access Journals: DOAJ Articles
description SCIAMACHY, the Scanning Imaging Absorption spectroMeter for Atmospheric CHartographY has provided measurements of limb-scattered solar radiation in the 220 nm to 2380 nm wavelength range since summer of 2002. Measurements in the UV spectral range are well suited for the retrieval of particle sizes of noctilucent clouds (NLCs) and have been used to compile the largest existing satellite data base of NLC particle sizes. This paper presents a comparison of SCIAMACHY NLC size retrievals with the extensive NLC particle size data set based on ground-based LIDAR measurements at the Arctic LIDAR Observatory for Middle Atmosphere Research (ALOMAR, 69° N, 16° E) for the Northern Hemisphere NLC seasons 2003 to 2007. Most of the presented SCIAMACHY NLC particle size retrievals are based on cylindrical particles and a Gaussian particle size distribution with a fixed width of 24 nm. If the differences in spatial as well as vertical resolution between SCIAMACHY and the ALOMAR LIDAR are taken into account, very good agreement is found. The mean particle size derived from SCIAMACHY limb observations for the ALOMAR overpasses in 2003 to 2007 is 56.2 nm with a standard deviation of 12.5 nm, and the LIDAR observations yield a value of 54.2 nm with a standard deviation of 17.4 nm.
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op_source Atmospheric Measurement Techniques, Vol 2, Iss 2, Pp 523-531 (2009)
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spelling ftdoajarticles:oai:doaj.org/article:2975645ef0c640a3909b97e7b8f0ac3f 2025-01-16T20:40:31+00:00 Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N) J. P. Burrows H. Bovensmann G. Baumgarten C. E. Robert C. von Savigny 2009-09-01T00:00:00Z https://doaj.org/article/2975645ef0c640a3909b97e7b8f0ac3f EN eng Copernicus Publications http://www.atmos-meas-tech.net/2/523/2009/amt-2-523-2009.pdf https://doaj.org/toc/1867-1381 https://doaj.org/toc/1867-8548 1867-1381 1867-8548 https://doaj.org/article/2975645ef0c640a3909b97e7b8f0ac3f Atmospheric Measurement Techniques, Vol 2, Iss 2, Pp 523-531 (2009) Environmental engineering TA170-171 Earthwork. Foundations TA715-787 article 2009 ftdoajarticles 2023-01-08T01:28:15Z SCIAMACHY, the Scanning Imaging Absorption spectroMeter for Atmospheric CHartographY has provided measurements of limb-scattered solar radiation in the 220 nm to 2380 nm wavelength range since summer of 2002. Measurements in the UV spectral range are well suited for the retrieval of particle sizes of noctilucent clouds (NLCs) and have been used to compile the largest existing satellite data base of NLC particle sizes. This paper presents a comparison of SCIAMACHY NLC size retrievals with the extensive NLC particle size data set based on ground-based LIDAR measurements at the Arctic LIDAR Observatory for Middle Atmosphere Research (ALOMAR, 69° N, 16° E) for the Northern Hemisphere NLC seasons 2003 to 2007. Most of the presented SCIAMACHY NLC particle size retrievals are based on cylindrical particles and a Gaussian particle size distribution with a fixed width of 24 nm. If the differences in spatial as well as vertical resolution between SCIAMACHY and the ALOMAR LIDAR are taken into account, very good agreement is found. The mean particle size derived from SCIAMACHY limb observations for the ALOMAR overpasses in 2003 to 2007 is 56.2 nm with a standard deviation of 12.5 nm, and the LIDAR observations yield a value of 54.2 nm with a standard deviation of 17.4 nm. Article in Journal/Newspaper Arctic Directory of Open Access Journals: DOAJ Articles Alomar ENVELOPE(-67.083,-67.083,-68.133,-68.133) Arctic
spellingShingle Environmental engineering
TA170-171
Earthwork. Foundations
TA715-787
J. P. Burrows
H. Bovensmann
G. Baumgarten
C. E. Robert
C. von Savigny
Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)
title Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)
title_full Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)
title_fullStr Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)
title_full_unstemmed Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)
title_short Comparison of NLC particle sizes derived from SCIAMACHY/Envisat observations with ground-based LIDAR measurements at ALOMAR (69° N)
title_sort comparison of nlc particle sizes derived from sciamachy/envisat observations with ground-based lidar measurements at alomar (69° n)
topic Environmental engineering
TA170-171
Earthwork. Foundations
TA715-787
topic_facet Environmental engineering
TA170-171
Earthwork. Foundations
TA715-787
url https://doaj.org/article/2975645ef0c640a3909b97e7b8f0ac3f