4.7 Article

Regions of rapid sea ice change: An inter-hemispheric seasonal comparison

Journal

GEOPHYSICAL RESEARCH LETTERS
Volume 39, Issue -, Pages -

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2012GL050874

Keywords

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Funding

  1. NOAA [NA17RJ1231]
  2. LTER [NSF/OPP 0217282]
  3. Australian Government's Cooperative Research Centre through the Antarctic Climate and Ecosystems Cooperative Research Centre
  4. Australian Antarctic Division Project [CPC19]
  5. Australian Antarctic Science Project [3024]
  6. NASA
  7. Office of Polar Programs (OPP)
  8. Directorate For Geosciences [0838975] Funding Source: National Science Foundation
  9. Office of Polar Programs (OPP)
  10. Directorate For Geosciences [823101] Funding Source: National Science Foundation

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This bi-polar analysis resolves ice edge changes on space/time scales relevant for investigating seasonal ice-ocean feedbacks and focuses on spatio-temporal changes in the timing of annual sea ice retreat and advance over 1979/80 to 2010/11. Where Arctic sea ice decrease is fastest, the sea ice retreat is now nearly 2 months earlier and subsequent advance more than 1 month later (compared to 1979/80), resulting in a 3-month longer summer ice-free season. In the Antarctic Peninsula and Bellingshausen Sea region, sea ice retreat is more than 1 month earlier and advance 2 months later, resulting in a more than 3-month longer summer icefree season. In contrast, in the western Ross Sea (Antarctica) region, sea ice retreat and advance are more than 1 month later and earlier respectively, resulting in a more than 2 month shorter summer ice-free season. Regardless of trend magnitude or direction, and at latitudes mostly poleward of 70 degrees (N/S), there is strong correspondence between anomalies in the timings of sea ice retreat and subsequent advance, but little correspondence between advance and subsequent retreat. These results support a strong ocean thermal feedback in autumn in response to changes in spring sea ice retreat. Further, model calculations suggest different net ocean heat changes in the Arctic versus Antarctic where autumn sea ice advance is 1 versus 2 months later. Ocean-atmosphere changes, particularly in boreal spring and austral autumn (i.e., during similar to March-May), are discussed and compared, as well as possible inter-hemispheric climate connections. Citation: Stammerjohn, S., R. Massom, D. Rind, and D. Martinson (2012), Regions of rapid sea ice change: An interhemispheric seasonal comparison, Geophys. Res. Lett., 39, L05502, doi: 10.1029/2012GL050874.

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