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Climate of the past· 2026Q1· Review

Antarctic sea ice over the past 130 000 years – Part 2: A review of its role in the Earth system

Zanna Chase, Karen Elizabeth Kohfeld, Amy R. Leventer, David Lund et al.

Short summary

Reductions in Antarctic sea ice, evidenced by paleoclimate archives and models, significantly impact ocean circulation, ice sheets, marine productivity, and the carbon cycle.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Antarctic sea ice is closely linked to the cryosphere, atmosphere, and ocean.
  • Evidence from theory and models strongly supports impacts of Antarctic sea ice on the Earth system.
  • Paleo-proxy reconstructions indicate co-occurrence of sea ice changes with shifts in the carbon cycle, marine productivity, and ocean circulation.
  • Interconnections within the Earth system make isolating sea ice's precise impact difficult.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract. Antarctic sea-ice cover reached historically low levels in 2023, consistent with the simulated decrease in sea-ice extent in response to anthropogenic warming. Antarctic sea ice is closely linked to multiple components of the Earth system, thus its demise could precipitate widespread, cascading changes across the cryosphere, atmosphere, and ocean. However, the nature and strength of these interconnections are poorly understood, and they are often inadequately represented in models. In this review paper we use modern observations, models and paleoclimate archives covering the last glacial cycle to gain insights into how reductions in sea ice may affect other components of the Earth system. We review how Antarctic sea ice interacts with ocean and atmosphere circulation, ice sheets and ice shelves, marine productivity, and the carbon cycle over the last glacial cycle, for which we have the most robust sea-ice reconstructions. The review finds strong evidence from theory and models for impacts of Antarctic sea ice on the Earth system. Paleo-proxy reconstructions provide examples where changes in sea ice co-occur with changes in the carbon cycle, marine productivity, and ocean circulation. However, challenges remain in isolating the impact of sea ice in a highly interconnected system.

The authors' abstract, as published at the source. Climate of the past, 2026 · DOI ↗

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Field: Atmospheric Science

Atmospheric ScienceEarth and Planetary Sciences