Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles

A single isotope ratio (δD or δ18O) of water is widely used as an air-temperature proxy in Antarctic ice cores. These isotope ratios, however, do not solely depend on air-temperature but also on the extent of distillation of heavy isotopes out of atmospheric water vapor from an oceanic moisture sour...

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Published in:Climate of the Past
Main Authors: Uemura R., Masson Delmotte V., Jouzel J., Landais A., Motoyama H., STENNI, BARBARA
Other Authors: Uemura, R., Masson Delmotte, V., Jouzel, J., Landais, A., Motoyama, H., Stenni, Barbara
Format: Article in Journal/Newspaper
Language:English
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/11368/2626917
https://doi.org/10.5194/cp-8-1109-2012
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spelling ftunitriestiris:oai:arts.units.it:11368/2626917 2023-05-15T13:32:20+02:00 Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles Uemura R. Masson Delmotte V. Jouzel J. Landais A. Motoyama H. STENNI, BARBARA Uemura, R. Masson Delmotte, V. Jouzel, J. Landais, A. Motoyama, H. Stenni, Barbara 2012 http://hdl.handle.net/11368/2626917 https://doi.org/10.5194/cp-8-1109-2012 eng eng volume:8 firstpage:1109 lastpage:1125 numberofpages:17 journal:CLIMATE OF THE PAST http://hdl.handle.net/11368/2626917 doi:10.5194/cp-8-1109-2012 info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84863461658 Deuterium exce East Antarctica ice core site temperature source temperature supersaturation function Dome F Vostok EPICA Dome C info:eu-repo/semantics/article 2012 ftunitriestiris https://doi.org/10.5194/cp-8-1109-2012 2023-04-09T06:10:43Z A single isotope ratio (δD or δ18O) of water is widely used as an air-temperature proxy in Antarctic ice cores. These isotope ratios, however, do not solely depend on air-temperature but also on the extent of distillation of heavy isotopes out of atmospheric water vapor from an oceanic moisture source to a precipitation site. The temperature changes at the oceanic moisture source (ΔTsource) and at the precipitation site (ΔTsite) can be retrieved by using deuterium-excess (d) data. A new d record from Dome Fuji, Antarctica is produced spanning the past 360,000 years and compared with records from Vostok and EPICA Dome C ice cores. To retrieve ΔTsource and ΔTsite information, different linear regression equations have been proposed using theoretical isotope distillation models. A major source of uncertainty lies in the coefficient of regression, βsite which is related to the sensitivity of d to ΔTsite. We show that different ranges of temperature and selections of isotopic model outputs may increase the value of βsite by a factor of two. To explore the impacts of this coefficient on the reconstructed temperatures, we apply for the first time the exact same methodology to the isotope records from the three Antarctica ice cores. We show that uncertainties in the βsite coefficient strongly affect (i) the glacial-interglacial magnitude of ΔTsource; (ii) the imprint of obliquity in ΔTsource and in the site-source temperature gradient. By contrast, we highlight the robustness of ΔTsite reconstruction using water isotopes records. Article in Journal/Newspaper Antarc* Antarctic Antarctica East Antarctica EPICA ice core Università degli studi di Trieste: ArTS (Archivio della ricerca di Trieste) Antarctic East Antarctica Dome Fuji ENVELOPE(39.700,39.700,-77.317,-77.317) Dome F ENVELOPE(39.700,39.700,-77.317,-77.317) Climate of the Past 8 3 1109 1125
institution Open Polar
collection Università degli studi di Trieste: ArTS (Archivio della ricerca di Trieste)
op_collection_id ftunitriestiris
language English
topic Deuterium exce
East Antarctica
ice core
site temperature
source temperature
supersaturation function
Dome F
Vostok
EPICA Dome C
spellingShingle Deuterium exce
East Antarctica
ice core
site temperature
source temperature
supersaturation function
Dome F
Vostok
EPICA Dome C
Uemura R.
Masson Delmotte V.
Jouzel J.
Landais A.
Motoyama H.
STENNI, BARBARA
Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
topic_facet Deuterium exce
East Antarctica
ice core
site temperature
source temperature
supersaturation function
Dome F
Vostok
EPICA Dome C
description A single isotope ratio (δD or δ18O) of water is widely used as an air-temperature proxy in Antarctic ice cores. These isotope ratios, however, do not solely depend on air-temperature but also on the extent of distillation of heavy isotopes out of atmospheric water vapor from an oceanic moisture source to a precipitation site. The temperature changes at the oceanic moisture source (ΔTsource) and at the precipitation site (ΔTsite) can be retrieved by using deuterium-excess (d) data. A new d record from Dome Fuji, Antarctica is produced spanning the past 360,000 years and compared with records from Vostok and EPICA Dome C ice cores. To retrieve ΔTsource and ΔTsite information, different linear regression equations have been proposed using theoretical isotope distillation models. A major source of uncertainty lies in the coefficient of regression, βsite which is related to the sensitivity of d to ΔTsite. We show that different ranges of temperature and selections of isotopic model outputs may increase the value of βsite by a factor of two. To explore the impacts of this coefficient on the reconstructed temperatures, we apply for the first time the exact same methodology to the isotope records from the three Antarctica ice cores. We show that uncertainties in the βsite coefficient strongly affect (i) the glacial-interglacial magnitude of ΔTsource; (ii) the imprint of obliquity in ΔTsource and in the site-source temperature gradient. By contrast, we highlight the robustness of ΔTsite reconstruction using water isotopes records.
author2 Uemura, R.
Masson Delmotte, V.
Jouzel, J.
Landais, A.
Motoyama, H.
Stenni, Barbara
format Article in Journal/Newspaper
author Uemura R.
Masson Delmotte V.
Jouzel J.
Landais A.
Motoyama H.
STENNI, BARBARA
author_facet Uemura R.
Masson Delmotte V.
Jouzel J.
Landais A.
Motoyama H.
STENNI, BARBARA
author_sort Uemura R.
title Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
title_short Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
title_full Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
title_fullStr Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
title_full_unstemmed Ranges of moisture-source temperature estimated from Antarctic ice cores stable isotope records over glacial–interglacial cycles
title_sort ranges of moisture-source temperature estimated from antarctic ice cores stable isotope records over glacial–interglacial cycles
publishDate 2012
url http://hdl.handle.net/11368/2626917
https://doi.org/10.5194/cp-8-1109-2012
long_lat ENVELOPE(39.700,39.700,-77.317,-77.317)
ENVELOPE(39.700,39.700,-77.317,-77.317)
geographic Antarctic
East Antarctica
Dome Fuji
Dome F
geographic_facet Antarctic
East Antarctica
Dome Fuji
Dome F
genre Antarc*
Antarctic
Antarctica
East Antarctica
EPICA
ice core
genre_facet Antarc*
Antarctic
Antarctica
East Antarctica
EPICA
ice core
op_relation volume:8
firstpage:1109
lastpage:1125
numberofpages:17
journal:CLIMATE OF THE PAST
http://hdl.handle.net/11368/2626917
doi:10.5194/cp-8-1109-2012
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-84863461658
op_doi https://doi.org/10.5194/cp-8-1109-2012
container_title Climate of the Past
container_volume 8
container_issue 3
container_start_page 1109
op_container_end_page 1125
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