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Effects of stratospheric variability on El Niño teleconnections

Bibliographic Data

ID15547809
AuthorsJadwiga H Richter (0000-0001-7048-0781, NSF NCAR Climate and Global Dynamics Laboratory, corresponding author), Clara Deser (0000-0002-5517-9103, NSF National Center for Atmospheric Research), Lantao Sun (0000-0001-8578-9175, Cooperative Institute for Research in Environmental Sciences)
Year2015
Volume10
Issue12
Pages124021-124021
Publication date2015-12-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/10/12/124021
OpenAlexW2206006725
LanguageEN
Citations received3
References cited45

The effects of the tropical Pacific El Nino Southern Oscillation (ENSO) phenomenon are communicated to the rest of the globe via atmospheric teleconnections. Traditionally, ENSO teleconnections have been viewed as tropospheric phenomena, propagating to higher latitudes as Rossby waves. Recent studies, however, suggest an influence of the stratosphere on extra-tropical ENSO teleconnections. The stratosphere is highly variable: in the tropics, the primary mode of variability is the quasi-biennial oscillation (QBO), and in the extra-tropics sudden stratospheric warmings (SSWs) regularly perturb the mean state. Here, we conduct a 10-member ensemble of simulations with a stratosphere-resolving atmospheric general circulation model forced with the observed evolution of sea surface temperatures during 1952-2001 to examine the effects of the QBO and SSWs on the zonal-mean circulation and temperature response to El Nino, with a focus on the northern extra-tropics during winter. We find that SSWs have a larger impact than the QBO on the composite El Nino responses. During El Nino winters with SSWs, the polar stratosphere shows positive temperature anomalies that propagate downward to the surface where they are associated with increased sea-level pressure over the Arctic. During El Nino winters without SSWs, the stratosphere and upper troposphere show negative temperature anomalies but these do not reach the surface. The QBO modulates the El Nino teleconnection primarily in winters without SSWs: the negative temperature anomalies in the polar stratosphere and upper troposphere are twice as large during QBO West compared to QBO East years. In addition, El Nino winters that coincide with the QBO West phase show stronger positive sea-level pressure anomalies over the eastern Atlantic and Northern Europe than those in the QBO East phase. The results imply that the stratosphere imparts considerable variability to ENSO teleconnections

Arctic oscillation · Atmospheric sciences · Climatology · El Niño Southern Oscillation · Latitude · Northern Hemisphere · Polar vortex · Quasi-biennial oscillation · Sea surface temperature · Stratosphere · Sudden stratospheric warming · Teleconnection · Troposphere · Atmospheric and Environmental Gas Dynamics · Atmospheric Ozone and Climate · Climate variability and models · Environmental Science · Geology

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Unique citing works3
Citations per year0,38
Citation span2018 - 2021 (4)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 3

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