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Warmer Antarctic summers in recent decades linked to earlier stratospheric final warming occurrences

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Title
Warmer Antarctic summers in recent decades linked to earlier stratospheric final warming occurrences
Other Titles
이른 성층권 최종승온 발생과 연관된 남극 여름철 온난화 경향
Authors
Choi, Hyesun
Kwon Hataek
Kim, Seong-Joong
Kim Baek-Min
Keywords
AntarcticaPolar vortexSea iceStratospheric final warming
Issue Date
2024
Citation
Choi, Hyesun, et al. 2024. "Warmer Antarctic summers in recent decades linked to earlier stratospheric final warming occurrences". COMMUNICATIONS EARTH & ENVIRONMENT, 5(1): 50-0.
Abstract
Since the 2000s, the pause of the strong Antarctic cooling and later stratospheric final warming onset trends has been identified. Here we employ composite and congruence analysis using reanalysis and in-situ data to propose a linkage between pivotal changes in the surface temperature trends and the timing of stratospheric final warming events. In early stratospheric final warming events, the positive polar cap height anomaly developed in the stratosphere in early October, descending to the troposphere and surface in late spring and summer, resulting in high-pressure anomalies, which led to warmer surfaces in most of Antarctica. In late stratospheric final warming occurrences, opposing or weaker behaviors were observed. The trend toward earlier stratospheric final warming appears to play a considerable role in warmer summers over parts of interior Antarctica through the strengthening of the anti-cyclonic surface pressure anomaly. This could influence the regional sea-ice modulation over the Southern Ocean. Earlier occurrence of the stratospheric final warming in the Southern Hemisphere vortex over the past two decades is linked to warmer surface temperatures over interior Antarctica, according to an investigation using reanalysis data.
URI
https://repository.kopri.re.kr/handle/201206/16417
DOI
http://dx.doi.org/10.1038/s43247-024-01221-0
Type
Article
Station
해당사항없음
Indexed
SCIE
Appears in Collections  
2024-2024, 남극 기후 환경 변화 이해와 전지구 영향 평가 (24-24) / 정의석 (PE24030)
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