Cloud Radiative Effects Slow Sea Ice Changes During Summer Arctic Dipole Anomaly

Author:

Zhang Haotian12ORCID,Zhao Chuanfeng23ORCID,Xia Yan4ORCID,Chen Annan23,Yang Yikun23,Yang Jie1,Zhao Xin1,Chi Yulei1,Xu Hongtao1ORCID,Zhong Shouyi1

Affiliation:

1. Faculty of Geographical Science Beijing Normal University Beijing China

2. Department of Atmospheric and Oceanic Sciences School of Physics Peking University Beijing China

3. Institute of Carbon Neutrality Peking University Beijing China

4. School of Systems Science Beijing Normal University Beijing China

Abstract

AbstractOver the past 30 years, the Arctic Dipole Anomaly (DA) has repeatedly led to record lows in summer sea ice extent, with cloud radiative effects (CRE) playing a crucial regulatory role. Here, we reveal the CRE variations between positive and negative DA events and elucidate the slowing impacts of CRE on sea ice thickness (SIT) changes. The DA triggers robust meridional winds and transpolar drift, markedly reducing SIT in the Beaufort Sea (BeS), Chukchi Sea (CS), and East Siberian Sea (ESS), while increasing it in the Greenland Sea (GS). CRE significantly slow SIT changes, contributing +14.4, +4.4, +16.4, and −26.7 cm to changes from June to August, against total changes of −55.9, −29.4, −39.8, and +42.8 cm in September over BeS, CS, ESS, and GS, respectively. This study underscores the key impacts of CRE on sea ice variation, emphasizing their significance in the polar climate system.

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

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