Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period

Since its discovery in Greenland ice cores, the millennial scale climatic variability of the last glacial period has been increasingly documented at all latitudes with studies focusing mainly on Marine Isotopic Stage 3 (MIS 3; 28–60 thousand of years before present, hereafter ka) and characterized b...

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Main Authors: E. Capron, A. Landais, J. Chappellaz, A. Schilt, D. Buiron, D. Dahl-Jensen, S. J. Johnsen, J. Jouzel, B. Lemieux-Dudon, L. Loulergue, M. Leuenberger, V. Masson-Delmotte, H. Meyer, H. Oerter, B. Stenni
Format: Article
Language:English
Published: Copernicus Publications 2010-06-01
Series:Climate of the Past
Online Access:http://www.clim-past.net/6/345/2010/cp-6-345-2010.pdf
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spelling doaj-8d49e15fa31a455cbc3204340605191e2020-11-24T22:28:54ZengCopernicus PublicationsClimate of the Past1814-93241814-93322010-06-016334536510.5194/cp-6-345-2010Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial periodE. CapronA. LandaisJ. ChappellazA. SchiltD. BuironD. Dahl-JensenS. J. JohnsenJ. JouzelB. Lemieux-DudonL. LoulergueM. LeuenbergerV. Masson-DelmotteH. MeyerH. OerterB. StenniSince its discovery in Greenland ice cores, the millennial scale climatic variability of the last glacial period has been increasingly documented at all latitudes with studies focusing mainly on Marine Isotopic Stage 3 (MIS 3; 28–60 thousand of years before present, hereafter ka) and characterized by short Dansgaard-Oeschger (DO) events. Recent and new results obtained on the EPICA and NorthGRIP ice cores now precisely describe the rapid variations of Antarctic and Greenland temperature during MIS 5 (73.5–123 ka), a time period corresponding to relatively high sea level. The results display a succession of abrupt events associated with long Greenland InterStadial phases (GIS) enabling us to highlight a sub-millennial scale climatic variability depicted by (i) short-lived and abrupt warming events preceding some GIS (precursor-type events) and (ii) abrupt warming events at the end of some GIS (rebound-type events). The occurrence of these sub-millennial scale events is suggested to be driven by the insolation at high northern latitudes together with the internal forcing of ice sheets. Thanks to a recent NorthGRIP-EPICA Dronning Maud Land (EDML) common timescale over MIS 5, the bipolar sequence of climatic events can be established at millennial to sub-millennial timescale. This shows that for extraordinary long stadial durations the accompanying Antarctic warming amplitude cannot be described by a simple linear relationship between the two as expected from the bipolar seesaw concept. We also show that when ice sheets are extensive, Antarctica does not necessarily warm during the whole GS as the thermal bipolar seesaw model would predict, questioning the Greenland ice core temperature records as a proxy for AMOC changes throughout the glacial period. http://www.clim-past.net/6/345/2010/cp-6-345-2010.pdf
collection DOAJ
language English
format Article
sources DOAJ
author E. Capron
A. Landais
J. Chappellaz
A. Schilt
D. Buiron
D. Dahl-Jensen
S. J. Johnsen
J. Jouzel
B. Lemieux-Dudon
L. Loulergue
M. Leuenberger
V. Masson-Delmotte
H. Meyer
H. Oerter
B. Stenni
spellingShingle E. Capron
A. Landais
J. Chappellaz
A. Schilt
D. Buiron
D. Dahl-Jensen
S. J. Johnsen
J. Jouzel
B. Lemieux-Dudon
L. Loulergue
M. Leuenberger
V. Masson-Delmotte
H. Meyer
H. Oerter
B. Stenni
Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
Climate of the Past
author_facet E. Capron
A. Landais
J. Chappellaz
A. Schilt
D. Buiron
D. Dahl-Jensen
S. J. Johnsen
J. Jouzel
B. Lemieux-Dudon
L. Loulergue
M. Leuenberger
V. Masson-Delmotte
H. Meyer
H. Oerter
B. Stenni
author_sort E. Capron
title Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
title_short Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
title_full Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
title_fullStr Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
title_full_unstemmed Millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
title_sort millennial and sub-millennial scale climatic variations recorded in polar ice cores over the last glacial period
publisher Copernicus Publications
series Climate of the Past
issn 1814-9324
1814-9332
publishDate 2010-06-01
description Since its discovery in Greenland ice cores, the millennial scale climatic variability of the last glacial period has been increasingly documented at all latitudes with studies focusing mainly on Marine Isotopic Stage 3 (MIS 3; 28–60 thousand of years before present, hereafter ka) and characterized by short Dansgaard-Oeschger (DO) events. Recent and new results obtained on the EPICA and NorthGRIP ice cores now precisely describe the rapid variations of Antarctic and Greenland temperature during MIS 5 (73.5–123 ka), a time period corresponding to relatively high sea level. The results display a succession of abrupt events associated with long Greenland InterStadial phases (GIS) enabling us to highlight a sub-millennial scale climatic variability depicted by (i) short-lived and abrupt warming events preceding some GIS (precursor-type events) and (ii) abrupt warming events at the end of some GIS (rebound-type events). The occurrence of these sub-millennial scale events is suggested to be driven by the insolation at high northern latitudes together with the internal forcing of ice sheets. Thanks to a recent NorthGRIP-EPICA Dronning Maud Land (EDML) common timescale over MIS 5, the bipolar sequence of climatic events can be established at millennial to sub-millennial timescale. This shows that for extraordinary long stadial durations the accompanying Antarctic warming amplitude cannot be described by a simple linear relationship between the two as expected from the bipolar seesaw concept. We also show that when ice sheets are extensive, Antarctica does not necessarily warm during the whole GS as the thermal bipolar seesaw model would predict, questioning the Greenland ice core temperature records as a proxy for AMOC changes throughout the glacial period.
url http://www.clim-past.net/6/345/2010/cp-6-345-2010.pdf
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