Antarctic surface temperature and elevation during the Last Glacial Maximum

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Dokumenter

  • Fulltext

    Indsendt manuskript, 5,78 MB, PDF-dokument

  • Christo Buizert
  • T. J. Fudge
  • William H. G. Roberts
  • Eric J. Steig
  • Sam Sherriff-Tadano
  • Catherine Ritz
  • Eric Lefebvre
  • Jon Edwards
  • Kenji Kawamura
  • Ikumi Oyabu
  • Hideaki Motoyama
  • Emma C. Kahle
  • Tyler R. Jones
  • Ayako Abe-Ouchi
  • Takashi Obase
  • Carlos Martin
  • Hugh Corr
  • Jeffrey P. Severinghaus
  • Ross Beaudette
  • Jenna A. Epifanio
  • Edward J. Brook
  • Kaden Martin
  • Jerome Chappellaz
  • Shuji Aoki
  • Takakiyo Nakazawa
  • Todd A. Sowers
  • Richard B. Alley
  • Jinho Ahn
  • Michael Sigl
  • Mirko Severi
  • Nelia W. Dunbar
  • John M. Fegyveresi
  • Chengfei He
  • Zhengyu Liu
  • Jiang Zhu
  • Bette L. Otto-Bliesner
  • Vladimir Y. Lipenkov
  • Masa Kageyama
  • Jakob Schwander

Water-stable isotopes in polar ice cores are a widely used temperature proxy in paleoclimate reconstruction, yet calibration remains challenging in East Antarctica. Here, we reconstruct the magnitude and spatial pattern of Last Glacial Maximum surface cooling in Antarctica using borehole thermometry and firn properties in seven ice cores. West Antarctic sites cooled similar to 10 degrees C relative to the preindustrial period. East Antarctic sites show a range from similar to 4 degrees to similar to 7 degrees C cooling, which is consistent with the results of global climate models when the effects of topographic changes indicated with ice core air-content data are included, but less than those indicated with the use of water-stable isotopes calibrated against modern spatial gradients. An altered Antarctic temperature inversion during the glacial reconciles our estimates with water-isotope observations.

OriginalsprogEngelsk
TidsskriftScience
Vol/bind372
Udgave nummer6546
Sider (fra-til)1097-1101
Antal sider57
ISSN0036-8075
DOI
StatusUdgivet - 4 jun. 2021

ID: 272510273