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Cited 413 time in webofscience Cited 437 time in scopus
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Pantropical climate interactions SCIE SCOPUS

Title
Pantropical climate interactions
Authors
Cai, WenjuWu, LixinLengaigne, MatthieuLi, TimMcGregor, ShayneKUG, JONG SEONGYu, Jin-YiStuecker, Malte F.Santoso, AgusLi, XichenHam, Yoo-GeunChikamoto, YoshimitsuNg, BenjaminMcPhaden, Michael J.Du, YanDommenget, DietmarJia, FanKajtar, Jules B.Keenlyside, NoelLin, XiaopeiLuo, Jing-JiaMartin-Rey, MartaRuprich-Robert, YohanWang, GuojianXie, Shang-PingYang, YunKang, Sarah M.Choi, Jun-YoungGan, BolanKim, Geon-IlKim, Chang-EunKim, SunyoungKim, Jeong-HwanChang, Ping
Date Issued
2019-03
Publisher
AMER ASSOC ADVANCEMENT SCIENCE
Abstract
The El Nino-Southern Oscillation (ENSO), which originates in the Pacific, is the strongest and most well-known mode of tropical climate variability. Its reach is global, and it can force climate variations of the tropical Atlantic and Indian Oceans by perturbing the global atmospheric circulation. Less appreciated is how the tropical Atlantic and Indian Oceans affect the Pacific. Especially noteworthy is the multidecadal Atlantic warming that began in the late 1990s, because recent research suggests that it has influenced Indo-Pacific climate, the character of the ENSO cycle, and the hiatus in global surface warming. Discovery of these pantropical interactions provides a pathway forward for improving predictions of climate variability in the current climate and for refining projections of future climate under different anthropogenic forcing scenarios.
URI
https://oasis.postech.ac.kr/handle/2014.oak/95263
DOI
10.1126/science.aav4236
ISSN
0036-8075
Article Type
Article
Citation
SCIENCE, vol. 363, no. 6430, page. 944 - +, 2019-03
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국종성KUG, JONG SEONG
Div of Environmental Science & Enginrg
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