Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.

Models of Jupiter's formation and structure predict that its atmosphere is enriched in oxygen, relative to the Sun, and that consequently water clouds should be present globally near the 5-bar pressure level. Past attempts to confirm these predictions have led to contradictory results; in parti...

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Main Authors: Roos-Serote, M, Vasavada, A, Kamp, L, Drossart, P, Irwin, P, Nixon, C, Carlson, R
Format: Journal article
Language:English
Published: 2000
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author Roos-Serote, M
Vasavada, A
Kamp, L
Drossart, P
Irwin, P
Nixon, C
Carlson, R
author_facet Roos-Serote, M
Vasavada, A
Kamp, L
Drossart, P
Irwin, P
Nixon, C
Carlson, R
author_sort Roos-Serote, M
collection OXFORD
description Models of Jupiter's formation and structure predict that its atmosphere is enriched in oxygen, relative to the Sun, and that consequently water clouds should be present globally near the 5-bar pressure level. Past attempts to confirm these predictions have led to contradictory results; in particular, the Galileo probe revealed a very dry atmosphere at the entry site, with no significant clouds at depths exceeding the 2-bar level. Although the entry site was known to be relatively cloud-free, the contrast between the observed local dryness and the expected global wetness was surprising. Here we analyse near-infrared (around 5 microm) observations of Jupiter, a spectral region that can reveal the water vapour abundance and vertical cloud structure in the troposphere. We find that humid and extremely dry regions exist in close proximity, and that some humid regions are spatially correlated with bright convective clouds extending from the deep water clouds to the visible atmosphere.
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spelling oxford-uuid:9667c5b0-d42d-4e37-a274-a7967a9cee2f2022-03-26T23:52:42ZProximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:9667c5b0-d42d-4e37-a274-a7967a9cee2fEnglishSymplectic Elements at Oxford2000Roos-Serote, MVasavada, AKamp, LDrossart, PIrwin, PNixon, CCarlson, RModels of Jupiter's formation and structure predict that its atmosphere is enriched in oxygen, relative to the Sun, and that consequently water clouds should be present globally near the 5-bar pressure level. Past attempts to confirm these predictions have led to contradictory results; in particular, the Galileo probe revealed a very dry atmosphere at the entry site, with no significant clouds at depths exceeding the 2-bar level. Although the entry site was known to be relatively cloud-free, the contrast between the observed local dryness and the expected global wetness was surprising. Here we analyse near-infrared (around 5 microm) observations of Jupiter, a spectral region that can reveal the water vapour abundance and vertical cloud structure in the troposphere. We find that humid and extremely dry regions exist in close proximity, and that some humid regions are spatially correlated with bright convective clouds extending from the deep water clouds to the visible atmosphere.
spellingShingle Roos-Serote, M
Vasavada, A
Kamp, L
Drossart, P
Irwin, P
Nixon, C
Carlson, R
Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.
title Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.
title_full Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.
title_fullStr Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.
title_full_unstemmed Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.
title_short Proximate humid and dry regions in Jupiter's atmosphere indicate complex local meteorology.
title_sort proximate humid and dry regions in jupiter s atmosphere indicate complex local meteorology
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AT vasavadaa proximatehumidanddryregionsinjupitersatmosphereindicatecomplexlocalmeteorology
AT kampl proximatehumidanddryregionsinjupitersatmosphereindicatecomplexlocalmeteorology
AT drossartp proximatehumidanddryregionsinjupitersatmosphereindicatecomplexlocalmeteorology
AT irwinp proximatehumidanddryregionsinjupitersatmosphereindicatecomplexlocalmeteorology
AT nixonc proximatehumidanddryregionsinjupitersatmosphereindicatecomplexlocalmeteorology
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