4.8 Article

Multi-decadal trends in Antarctic sea-ice extent driven by ENSO-SAM over the last 2,000 years

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NATURE GEOSCIENCE
卷 14, 期 3, 页码 156-+

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NATURE PORTFOLIO
DOI: 10.1038/s41561-021-00697-1

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资金

  1. ERC StG ICEPROXY project [203441]
  2. ANR CLIMICE project, FP7 Past4Future project [243908]
  3. RCN OCTEL project [248776/E10]
  4. Belgian Research Action through Interdisciplinary Networks Mass2Ant project [BR/165/A2/Mass2Ant]
  5. JSPS KAKENHI [23244102, 17H06318]
  6. Royal Society Te Aprangi Marsden Fund [MFP-VUW1808]
  7. MBIE NZ Antarctic Science Platform [ANTA1801]
  8. European Union [727852]
  9. Grants-in-Aid for Scientific Research [17H06318, 23244102] Funding Source: KAKEN
  10. New Zealand Ministry of Business, Innovation & Employment (MBIE) [ANTA1801] Funding Source: New Zealand Ministry of Business, Innovation & Employment (MBIE)

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Antarctic sea ice has become more extensive in the past four decades despite a warming climate. Regional climate heterogeneity in Indian Antarctic sea-ice cover over the last 2000 years is driven by multi-decadal variability of El Nino Southern Oscillation and Southern Annular Mode. Natural variability plays a crucial role in recent sea-ice trends and decadal variability in the Southern Ocean.
Antarctic sea ice has paradoxically become more extensive over the past four decades despite a warming climate. The regional expression of this trend has been linked to changes in vertical redistribution of ocean heat and large-scale wind-field shifts. However, the short length of modern observations has hindered attempts to attribute this trend to anthropogenic forcing or natural variability. Here, we present two new decadal-resolution records of sea ice and sea surface temperatures that document pervasive regional climate heterogeneity in Indian Antarctic sea-ice cover over the last 2,000 years. Data assimilation of our marine records in a climate model suggests that the reconstructed dichotomous regional conditions were driven by the multi-decadal variability of the El Nino Southern Oscillation and Southern Annular Mode (SAM). For example, during an El Nino/SAM- combination, the northward sea-ice transport was reduced while heat advection from the subtropics to the Southern Ocean increased, which resulted in reduced sea-ice extent in the Indian sector as sea ice was compacted along the Antarctic coast. Our results therefore indicate that natural variability is large in the Southern Ocean and suggest that it has played a crucial role in the recent sea-ice trends and their decadal variability in this region.

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