4.8 Article

Seasonal temperatures in West Antarctica during the Holocene

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NATURE
卷 613, 期 7943, 页码 292-+

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NATURE PORTFOLIO
DOI: 10.1038/s41586-022-05411-8

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By analyzing water-isotope ratios in the West Antarctic Ice Sheet Divide ice core, researchers have revealed the changes in summer and winter temperatures over the past 11,000 years. The results show that summer temperature variations are primarily related to summer insolation, while winter temperatures are influenced by meridional heat transport. The study also provides evidence for the reduction in ice sheet surface area in West Antarctica, supporting geological constraints in the region.
The recovery of long-term climate proxy records with seasonal resolution is rare because of natural smoothing processes, discontinuities and limitations in measurement resolution. Yet insolation forcing, a primary driver of multimillennial-scale climate change, acts through seasonal variations with direct impacts on seasonal climate(1). Whether the sensitivity of seasonal climate to insolation matches theoretical predictions has not been assessed over long timescales. Here, we analyse a continuous record of water-isotope ratios from the West Antarctic Ice Sheet Divide ice core to reveal summer and winter temperature changes through the last 11,000 years. Summer temperatures in West Antarctica increased through the early-to-mid-Holocene, reached a peak 4,100 years ago and then decreased to the present. Climate model simulations show that these variations primarily reflect changes in maximum summer insolation, confirming the general connection between seasonal insolation and warming and demonstrating the importance of insolation intensity rather than seasonally integrated insolation or season duration(2,3). Winter temperatures varied less overall, consistent with predictions from insolation forcing, but also fluctuated in the early Holocene, probably owing to changes in meridional heat transport. The magnitudes of summer and winter temperature changes constrain the lowering of the West Antarctic Ice Sheet surface since the early Holocene to less than 162 m and probably less than 58 m, consistent with geological constraints elsewhere in West Antarctica(4-7).

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