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April 12, 2026Geophysical Research Letters0 citationsOpen Access

Weak Influence of Surface Pressure on Arctic Radiative States From Winter to Spring Over the Sea‐Ice

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JLJean LacHCHélène ChepferMSMatthew D. Shupe

Key Points

  • The aim is to investigate the relationship between surface pressure and radiative states over Arctic sea-ice during winter and spring.
  • Analyzed ground-based observations from the 1998 SHEBA campaign.
  • Utilized satellite data spanning 13 years across Arctic basins.
  • Compared surface pressure values with distinct radiative states.
  • Found a statistically significant pressure influence on radiative states across basins.
  • Higher surface pressure is linked to the transmissive state, while lower pressure correlates with the opaque state.
  • Observed pressure influence is weaker than previous estimates, likely due to anomalous spring circulation.

Abstract

Abstract The Arctic sea‐ice surface energy budget is characterized by two radiative states driven by the presence or absence of opaque clouds that warm the surface. Ground‐based observations from the 1998 SHEBA campaign collected over sea‐ice suggested that the two radiative states correspond to distinct surface pressure values. Using satellite data, we search for such relationship over 13 years across all sea‐ice‐covered Arctic basins in winter and spring when radiative states influence sea‐ice growth and can trigger early melt. We find a consistent, statistically significant pressure influence across basins, with higher surface pressure associated with the transmissive state and lower pressure with the opaque state. The pressure offset is weaker than the SHEBA‐based estimate , likely caused by an anomalous circulation during spring 1998. These results indicate that surface pressure weakly but systematically modulates radiative‐state occurrence, helping to explain small regional differences in surface cloud radiative warming.

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Cite This Study

Lac et al. (2026) studied this question.

synapsesocial.com/papers/69db37774fe01fead37c57e1https://doi.org/10.1029/2026gl122051
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