Literature DB >> 22908256

Impact of abrupt deglacial climate change on tropical Atlantic subsurface temperatures.

Matthew W Schmidt1, Ping Chang, Jennifer E Hertzberg, Theodore R Them, Link Ji, Link J, Bette L Otto-Bliesner.   

Abstract

Both instrumental data analyses and coupled ocean-atmosphere models indicate that Atlantic meridional overturning circulation (AMOC) variability is tightly linked to abrupt tropical North Atlantic (TNA) climate change through both atmospheric and oceanic processes. Although a slowdown of AMOC results in an atmospheric-induced surface cooling in the entire TNA, the subsurface experiences an even larger warming because of rapid reorganizations of ocean circulation patterns at intermediate water depths. Here, we reconstruct high-resolution temperature records using oxygen isotope values and Mg/Ca ratios in both surface- and subthermocline-dwelling planktonic foraminifera from a sediment core located in the TNA over the last 22 ky. Our results show significant changes in the vertical thermal gradient of the upper water column, with the warmest subsurface temperatures of the last deglacial transition corresponding to the onset of the Younger Dryas. Furthermore, we present new analyses of a climate model simulation forced with freshwater discharge into the North Atlantic under Last Glacial Maximum forcings and boundary conditions that reveal a maximum subsurface warming in the vicinity of the core site and a vertical thermal gradient change at the onset of AMOC weakening, consistent with the reconstructed record. Together, our proxy reconstructions and modeling results provide convincing evidence for a subsurface oceanic teleconnection linking high-latitude North Atlantic climate to the tropical Atlantic during periods of reduced AMOC across the last deglacial transition.

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Year:  2012        PMID: 22908256      PMCID: PMC3437837          DOI: 10.1073/pnas.1207806109

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  5 in total

1.  Synchroneity of tropical and high-latitude Atlantic temperatures over the last glacial termination.

Authors:  David W Lea; Dorothy K Pak; Larry C Peterson; Konrad A Hughen
Journal:  Science       Date:  2003-09-05       Impact factor: 47.728

2.  Collapse and rapid resumption of Atlantic meridional circulation linked to deglacial climate changes.

Authors:  J F McManus; R Francois; J-M Gherardi; L D Keigwin; S Brown-Leger
Journal:  Nature       Date:  2004-04-22       Impact factor: 49.962

3.  Links between salinity variation in the Caribbean and North Atlantic thermohaline circulation.

Authors:  Matthew W Schmidt; Howard J Spero; David W Lea
Journal:  Nature       Date:  2004-03-11       Impact factor: 49.962

4.  155,000 years of West African monsoon and ocean thermal evolution.

Authors:  Syee Weldeab; David W Lea; Ralph R Schneider; Nils Andersen
Journal:  Science       Date:  2007-06-01       Impact factor: 47.728

5.  Transient simulation of last deglaciation with a new mechanism for Bolling-Allerod warming.

Authors:  Z Liu; B L Otto-Bliesner; F He; E C Brady; R Tomas; P U Clark; A E Carlson; J Lynch-Stieglitz; W Curry; E Brook; D Erickson; R Jacob; J Kutzbach; J Cheng
Journal:  Science       Date:  2009-07-17       Impact factor: 47.728

  5 in total
  4 in total

1.  Seasonal origin of the thermal maxima at the Holocene and the last interglacial.

Authors:  Samantha Bova; Yair Rosenthal; Zhengyu Liu; Shital P Godad; Mi Yan
Journal:  Nature       Date:  2021-01-27       Impact factor: 69.504

2.  Deglacial Tropical Atlantic subsurface warming links ocean circulation variability to the West African Monsoon.

Authors:  Matthew W Schmidt; Ping Chang; Andrew O Parker; Link Ji; Feng He
Journal:  Sci Rep       Date:  2017-11-13       Impact factor: 4.379

3.  Evidence for massive methane hydrate destabilization during the penultimate interglacial warming.

Authors:  Syee Weldeab; Ralph R Schneider; Jimin Yu; Andrew Kylander-Clark
Journal:  Proc Natl Acad Sci U S A       Date:  2022-08-22       Impact factor: 12.779

4.  A global database of Holocene paleotemperature records.

Authors:  Darrell Kaufman; Nicholas McKay; Cody Routson; Michael Erb; Basil Davis; Oliver Heiri; Samuel Jaccard; Jessica Tierney; Christoph Dätwyler; Yarrow Axford; Thomas Brussel; Olivier Cartapanis; Brian Chase; Andria Dawson; Anne de Vernal; Stefan Engels; Lukas Jonkers; Jeremiah Marsicek; Paola Moffa-Sánchez; Carrie Morrill; Anais Orsi; Kira Rehfeld; Krystyna Saunders; Philipp S Sommer; Elizabeth Thomas; Marcela Tonello; Mónika Tóth; Richard Vachula; Andrei Andreev; Sebastien Bertrand; Boris Biskaborn; Manuel Bringué; Stephen Brooks; Magaly Caniupán; Manuel Chevalier; Les Cwynar; Julien Emile-Geay; John Fegyveresi; Angelica Feurdean; Walter Finsinger; Marie-Claude Fortin; Louise Foster; Mathew Fox; Konrad Gajewski; Martin Grosjean; Sonja Hausmann; Markus Heinrichs; Naomi Holmes; Boris Ilyashuk; Elena Ilyashuk; Steve Juggins; Deborah Khider; Karin Koinig; Peter Langdon; Isabelle Larocque-Tobler; Jianyong Li; André Lotter; Tomi Luoto; Anson Mackay; Eniko Magyari; Steven Malevich; Bryan Mark; Julieta Massaferro; Vincent Montade; Larisa Nazarova; Elena Novenko; Petr Pařil; Emma Pearson; Matthew Peros; Reinhard Pienitz; Mateusz Płóciennik; David Porinchu; Aaron Potito; Andrew Rees; Scott Reinemann; Stephen Roberts; Nicolas Rolland; Sakari Salonen; Angela Self; Heikki Seppä; Shyhrete Shala; Jeannine-Marie St-Jacques; Barbara Stenni; Liudmila Syrykh; Pol Tarrats; Karen Taylor; Valerie van den Bos; Gaute Velle; Eugene Wahl; Ian Walker; Janet Wilmshurst; Enlou Zhang; Snezhana Zhilich
Journal:  Sci Data       Date:  2020-04-14       Impact factor: 6.444

  4 in total

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