Patterns and drivers of Holocene moisture variability in mid-latitude eastern North America

J J. Sakari Salonen F Frederik Schenk J John W. Williams B Bryan Shuman A Ana L. Lindroth Dauner S Sebastian Wagner J Johann Jungclaus (Max-Planck-Institut für Meteorologie) Q Qiong Zhang M Miska Luoto

Abstract

Abstract Proxy data for eastern North American hydroclimate indicate strong and persistent multi-millennial droughts during the Holocene, but climate model simulations often fail to reproduce the proxy-inferred droughts. Diagnosing the data–model mismatch can offer valuable insights about the drivers of hydrological variability and different regional sensitivities to hydroclimate forcing. Here we present a proxy–modeling synthesis for Holocene climates in the eastern North American mid-latitudes, including machine-learning-based water balance reconstructions and high-resolution climate simulations. These data-model results resolve prior-generation inconsistencies, show consistent spatiotemporal patterns of Holocene hydroclimate change, and enable assessment of the driving mechanisms. This agreement suggests that the secular summer insolation trend, combined with the Laurentide Ice Sheet deglaciation and its effect on atmospheric circulation, together explain the extent and duration of drier-than-present climates. In addition, our high-resolution proxy data and transient simulations reveal clear multi-centennial climate variability. In our simulations, temperature-driven increases in evapotranspiration exceed regional precipitation gains, drying much of the region during the mid Holocene. This suggests that the mid-Holocene multi-millennial drought was driven by similar processes compared to the drying trajectory projected for mid-latitude North America over this century, which is also primarily driven by warming.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

J

J. Sakari Salonen

F

Frederik Schenk

J

John W. Williams

B

Bryan Shuman

A

Ana L. Lindroth Dauner

S

Sebastian Wagner

J

Johann Jungclaus

Max-Planck-Institut für Meteorologie

Q

Qiong Zhang

M

Miska Luoto