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    Is There Evidence of Changes in Tropical Atlantic Variability Modes under AMO Phases in the Observational Record?

    Source: Journal of Climate:;2017:;volume 031:;issue 002::page 515
    Author:
    Martín-Rey, Marta
    ,
    Polo, Irene
    ,
    Rodríguez-Fonseca, Belén
    ,
    Losada, Teresa
    ,
    Lazar, Alban
    DOI: 10.1175/JCLI-D-16-0459.1
    Publisher: American Meteorological Society
    Abstract: AbstractThe Atlantic multidecadal oscillation (AMO) is the leading mode of Atlantic sea surface temperature (SST) variability at multidecadal time scales. Previous studies have shown that the AMO could modulate El Niño?Southern Oscillation (ENSO) variance. However, the role played by the AMO in the tropical Atlantic variability (TAV) is still uncertain. Here, it is demonstrated that during negative AMO phases, associated with a shallower thermocline, the eastern equatorial Atlantic SST variability is enhanced by more than 150% in boreal summer. Consequently, the interannual TAV modes are modified. During negative AMO, the Atlantic Niño displays larger amplitude and a westward extension and it is preceded by a simultaneous weakening of both subtropical highs in winter and spring. In contrast, a meridional seesaw SLP pattern evolving into a zonal gradient leads the Atlantic Niño during positive AMO. The north tropical Atlantic (NTA) mode is related to a Scandinavian blocking pattern during winter and spring in negative AMO, while under positive AMO it is part of the SST tripole associated with the North Atlantic Oscillation. Interestingly, the emergence of an overlooked variability mode, here called the horseshoe (HS) pattern on account of its shape, is favored during negative AMO. This anomalous warm (cool) HS surrounding an eastern equatorial cooling (warming) is remotely forced by an ENSO phenomenon. During negative AMO, the tropical?extratropical teleconnections are enhanced and the Walker circulation is altered. This, together with the increased equatorial SST variability, could promote the ENSO impacts on TAV. The results herein give a step forward in the better understanding of TAV, which is essential to improving its modeling, impacts, and predictability.
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      Is There Evidence of Changes in Tropical Atlantic Variability Modes under AMO Phases in the Observational Record?

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4261941
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    contributor authorMartín-Rey, Marta
    contributor authorPolo, Irene
    contributor authorRodríguez-Fonseca, Belén
    contributor authorLosada, Teresa
    contributor authorLazar, Alban
    date accessioned2019-09-19T10:08:11Z
    date available2019-09-19T10:08:11Z
    date copyright6/28/2017 12:00:00 AM
    date issued2017
    identifier otherjcli-d-16-0459.1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4261941
    description abstractAbstractThe Atlantic multidecadal oscillation (AMO) is the leading mode of Atlantic sea surface temperature (SST) variability at multidecadal time scales. Previous studies have shown that the AMO could modulate El Niño?Southern Oscillation (ENSO) variance. However, the role played by the AMO in the tropical Atlantic variability (TAV) is still uncertain. Here, it is demonstrated that during negative AMO phases, associated with a shallower thermocline, the eastern equatorial Atlantic SST variability is enhanced by more than 150% in boreal summer. Consequently, the interannual TAV modes are modified. During negative AMO, the Atlantic Niño displays larger amplitude and a westward extension and it is preceded by a simultaneous weakening of both subtropical highs in winter and spring. In contrast, a meridional seesaw SLP pattern evolving into a zonal gradient leads the Atlantic Niño during positive AMO. The north tropical Atlantic (NTA) mode is related to a Scandinavian blocking pattern during winter and spring in negative AMO, while under positive AMO it is part of the SST tripole associated with the North Atlantic Oscillation. Interestingly, the emergence of an overlooked variability mode, here called the horseshoe (HS) pattern on account of its shape, is favored during negative AMO. This anomalous warm (cool) HS surrounding an eastern equatorial cooling (warming) is remotely forced by an ENSO phenomenon. During negative AMO, the tropical?extratropical teleconnections are enhanced and the Walker circulation is altered. This, together with the increased equatorial SST variability, could promote the ENSO impacts on TAV. The results herein give a step forward in the better understanding of TAV, which is essential to improving its modeling, impacts, and predictability.
    publisherAmerican Meteorological Society
    titleIs There Evidence of Changes in Tropical Atlantic Variability Modes under AMO Phases in the Observational Record?
    typeJournal Paper
    journal volume31
    journal issue2
    journal titleJournal of Climate
    identifier doi10.1175/JCLI-D-16-0459.1
    journal fristpage515
    journal lastpage536
    treeJournal of Climate:;2017:;volume 031:;issue 002
    contenttypeFulltext
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