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Near collapse of the meridional SST gradient in the eastern equatorial Pacific during Heinrich Stadial 1

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Title Near collapse of the meridional SST gradient in the eastern equatorial Pacific during Heinrich Stadial 1
Names Kienast, Stephanie S. (creator)
Friedrich, Tobias (creator)
Dubois, Nathalie (creator)
Hill, Paul S. (creator)
Timmermann, Axel (creator)
Mix, Alan C. (creator)
Kienast, Markus (creator)
Date Issued 2013-11-25 (iso8601)
Note This is the publisher’s final pdf. The published article is copyrighted by the American Geophysical Union and can be found at: http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1944-9186.
Abstract Sea surface temperatures (SST) and inorganic continental input over the last 25,000 years
(25 ka) are reconstructed in the far eastern equatorial Pacific (EEP) based on three cores
stretching from the equatorial front (~0.01°N, ME0005-24JC) into the cold tongue region
(~3.6°S; TR163-31P and V19-30). We revisit previously published alkenone-derived SST
records for these sites and present a revised chronology for V19-30. Inorganic continental
input is quantified at all three sites based on ²³⁰Th-normalized fluxes of the long-lived
continental isotope thorium-232 and interpreted to be largely dust. Our data show a very weak
meridional (cross-equatorial) SST gradient during Heinrich Stadial 1 (HS1, 18–15 ka B.P.)
and high dust input along with peak export production at and north of the equator. These
findings are corroborated by an Earth system model experiment for HS1 that simulates
intensified northeasterly trade winds in the EEP, stronger equatorial upwelling, and surface
cooling. Furthermore, the related southward shift of the Intertropical Convergence Zone
(ITCZ) during HS1 is also indicative of drier conditions in the typical source regions for dust.
Genre Article
Topic Meridional SST gradient
Identifier Kienast, S. S., T. Friedrich, N. Dubois, P. S. Hill, A. Timmermann, A. C. Mix, and M. Kienast (2013), Near collapse of the meridional SST gradient in the eastern equatorial Pacific during Heinrich Stadial 1, Paleoceanography, 28, 663–674. doi:10.1002/2013PA002499

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