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Nearly synchronous climate change in the Northern Hemisphere during the last glacial termination

Author

Listed:
  • Larry Benson

    (*US Geological Survey)

  • James Burdett

    (†Cornell Laboratory for Stable Isotope Analysis, 125 Boyce Thompson Institute, Tower Road, Cornell University)

  • Steve Lund

    (University of Southern California)

  • Michaele Kashgarian

    (§Lawrence Livermore National Laboratory)

  • Scott Mensing

    (University of Nevada)

Abstract

The climate of the North Atlantic region underwent a series of abrupt cold/warm oscillations when the ice sheets of the Northern Hemisphere retreated during the last glacial termination (17.7–11.5kyr ago). Evidence for these oscillations, which are recorded in European terrestrial sediments as the Oldest Dryas/Bølling/Older Dryas/Allerød/Younger Dryas vegetational sequence1,2, has been found in Greenland ice cores3,4. The geographical extent of many of these oscillations is not well known5,6, but the last major cold event (the Younger Dryas) seems to have been global in extent7,8,9,10. Here we present evidence of four major oscillations in the hydrological balance of the Owens basin, California, that occurred during the last glacial termination. Dry events in western North America occurred at approximately the same time as cold events recorded in Greenland ice, with transitions between climate regimes in the two regions taking place within a few hundred years of each other. Our observations thus support recent climate simulations which indicate that cooling of the North Atlantic Ocean results in cooling of the North Pacific Ocean11 which, in turn, leads to a drier climate in western North America12.

Suggested Citation

  • Larry Benson & James Burdett & Steve Lund & Michaele Kashgarian & Scott Mensing, 1997. "Nearly synchronous climate change in the Northern Hemisphere during the last glacial termination," Nature, Nature, vol. 388(6639), pages 263-265, July.
  • Handle: RePEc:nat:nature:v:388:y:1997:i:6639:d:10.1038_40838
    DOI: 10.1038/40838
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