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Distinct decadal modulation of Atlantic-Niño influence on ENSO

  • Jae Heung Park*
  • , Jong Seong Kug*
  • , Young Min Yang
  • , Mi Kyung Sung
  • , Sunyong Kim
  • , Hyo Jeong Kim
  • , Hyo Jin Park
  • , Soon Il An
  • *Corresponding author for this work
  • Pohang University of Science and Technology
  • Yonsei University
  • Nanjing University of Information Science & Technology
  • CAS - Institute of Atmospheric Physics
  • Korea Institute of Science and Technology
  • APEC Climate Center
  • City University of Hong Kong

Research output: Contribution to journalJournal articlepeer-review

Abstract

It is known that winter Atlantic-Niño events can induce the El Niño–Southern oscillation (ENSO) in the following winter with a lag of 1-year during one period. On the other hand, summer Atlantic-Niño events can lead to the ENSO in the subsequent winter with a half-year lag during another period. In this study, we investigate the distinct interdecadal modulation of the effect of the Atlantic-Niños on ENSO by analyzing observational reanalysis datasets. During the mid-twentieth century, the winter Atlantic-Niño exhibited increased intensity and extended westward due to warmer conditions in the tropical western Atlantic. As a result, convection occurred from the Amazon to the Atlantic, triggering an atmospheric teleconnection that led to trade wind discharging and equatorial Kelvin waves, ultimately contributing to the development of ENSO. In contrast, during late twentieth century, summer Atlantic-Niño events were closely linked to the South America low-level jet in boreal spring. This connection led to the formation of widespread and intense convection over the Amazon to the Atlantic region. Then, the Walker circulation was effectively modulated, subsequently triggering ENSO events. Further analysis revealed that the interdecadal modulation of the Atlantic–South America–Pacific mean state plays a crucial role in shaping the impact of Atlantic-Niños on ENSO by modifying not only the characteristics of the Atlantic-Niños but also ocean–atmospheric feedback process. Therefore, improving our understanding of the interdecadal modulation of the climatological mean state over the Pacific to Atlantic regions enables better anticipation of the interaction between the Atlantic and Pacific Oceans.

Original languageEnglish
Article number105
Journalnpj Climate and Atmospheric Science
Volume6
Issue number1
DOIs
StatePublished - 2023.12

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