Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27

An unusually short glaciation interrupted the warm Pliocene around 3.3 Ma (Marine Isotope Stage (MIS) M2). Different hypotheses exist to explain why this glaciation event was so pronounced, and why the global climate system returned to warm Pliocene conditions relatively quickly afterwards. One of t...

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Main Authors: De Vleeschouwer, David, Auer, Gerald, Smith, Rebecca, Bogus, Kara A, Christensen, Beth A, Groeneveld, Jeroen, Petrick, Benjamin F, Henderiks, Jorijntje, Castañeda, Isla S, O'Brian, Evan, Ellinghausen, Maret, Gallagher, Stephen John, Fulthorpe, Craig S, Pälike, Heiko
Format: Article in Journal/Newspaper
Language:English
Published: PANGAEA - Data Publisher for Earth & Environmental Science 2018
Subjects:
Online Access:https://dx.doi.org/10.1594/pangaea.892422
https://doi.pangaea.de/10.1594/PANGAEA.892422
id ftdatacite:10.1594/pangaea.892422
record_format openpolar
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic Integrated Ocean Drilling Program / International Ocean Discovery Program IODP
spellingShingle Integrated Ocean Drilling Program / International Ocean Discovery Program IODP
De Vleeschouwer, David
Auer, Gerald
Smith, Rebecca
Bogus, Kara A
Christensen, Beth A
Groeneveld, Jeroen
Petrick, Benjamin F
Henderiks, Jorijntje
Castañeda, Isla S
O'Brian, Evan
Ellinghausen, Maret
Gallagher, Stephen John
Fulthorpe, Craig S
Pälike, Heiko
Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27
topic_facet Integrated Ocean Drilling Program / International Ocean Discovery Program IODP
description An unusually short glaciation interrupted the warm Pliocene around 3.3 Ma (Marine Isotope Stage (MIS) M2). Different hypotheses exist to explain why this glaciation event was so pronounced, and why the global climate system returned to warm Pliocene conditions relatively quickly afterwards. One of these proposed mechanisms is a reduced equator-to-pole heat transfer, in response to a tectonically reduced Indonesian Throughflow (ITF). The ITF is a critical part of the global thermohaline ocean circulation, transporting heat from the Indo-Pacific Warm Pool to the Indian Ocean. When ITF connectivity is reduced, the water and heat supply for the Leeuwin Current, flowing poleward along Australia's west coast, is also diminished. To assess the possible relationship between mid-Pliocene glaciations and latitudinal heat transport through the Indonesian Throughflow, we constructed a multi-proxy orbital-scale record for the 3.7–2.8 Ma interval from International Ocean Discovery Program (IODP) Site U1463, off northwest Australia. The comparison of the Site U1463 record with paleoclimate records from nearby Site 763 and West Pacific Warm Pool Site 806 allows for a detailed regional reconstruction of Pliocene paleoceanography and thus for testing the proposed hypothesis.An astronomically-paced decrease in potassium content characterizes the late Pliocene interval of U1463. This record documents the increasing aridity of northwest Australia, periodically alleviated by reinforced summer monsoon precipitation under summer insolation maxima. The d18O record of the planktonic foraminifer Globigerinoides sacculifer correlates exceptionally well with the sea surface temperature (SST) record from Site 806 in the West Pacific Warm Pool, even during MIS M2. Hence, Site U1463 preserves an uninterrupted ITF signal even during Pliocene glaciations. However, the U1463 d18O G.sacculifer record exhibits a 0.5‰ offset with the nearby Site 763A record around MIS M2. This implies that Site 763A, about 500 km west of U1463, more closely tracks Indian Ocean SST records across MIS M2. The U1463 data reveal that heat-transport through the Indonesian Throughflow did not shut down completely during MIS M2, but rather its intensity decreased prior to and during MIS M2, causing Site 763A to temporarily reflect an Indian Ocean, rather than an ITF signal. We conclude that ITF variability significantly influenced latitudinal heat transport by means of the Leeuwin Current and hence contributed to the relative intensity of MIS M2. We propose the ITF valve between the Pacific and Indian Ocean as a positive feedback mechanism, in which an initial sea level lowering reduces ITF heat transport, in turn amplifying global cooling by advancing the thermal isolation of Antarctica.
format Article in Journal/Newspaper
author De Vleeschouwer, David
Auer, Gerald
Smith, Rebecca
Bogus, Kara A
Christensen, Beth A
Groeneveld, Jeroen
Petrick, Benjamin F
Henderiks, Jorijntje
Castañeda, Isla S
O'Brian, Evan
Ellinghausen, Maret
Gallagher, Stephen John
Fulthorpe, Craig S
Pälike, Heiko
author_facet De Vleeschouwer, David
Auer, Gerald
Smith, Rebecca
Bogus, Kara A
Christensen, Beth A
Groeneveld, Jeroen
Petrick, Benjamin F
Henderiks, Jorijntje
Castañeda, Isla S
O'Brian, Evan
Ellinghausen, Maret
Gallagher, Stephen John
Fulthorpe, Craig S
Pälike, Heiko
author_sort De Vleeschouwer, David
title Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27
title_short Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27
title_full Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27
title_fullStr Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27
title_full_unstemmed Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27
title_sort planktic carbon and oxygen isotopes and ngr-derived k, u and th data, supplement to: de vleeschouwer, david; auer, gerald; smith, rebecca; bogus, kara a; christensen, beth a; groeneveld, jeroen; petrick, benjamin f; henderiks, jorijntje; castañeda, isla s; o'brian, evan; ellinghausen, maret; gallagher, stephen john; fulthorpe, craig s; pälike, heiko (2018): the amplifying effect of indonesian throughflow heat transport on late pliocene southern hemisphere climate cooling. earth and planetary science letters, 500, 15-27
publisher PANGAEA - Data Publisher for Earth & Environmental Science
publishDate 2018
url https://dx.doi.org/10.1594/pangaea.892422
https://doi.pangaea.de/10.1594/PANGAEA.892422
long_lat ENVELOPE(47.867,47.867,-67.967,-67.967)
geographic Christensen
Indian
Pacific
geographic_facet Christensen
Indian
Pacific
genre Antarc*
Antarctica
genre_facet Antarc*
Antarctica
op_relation https://dx.doi.org/10.1016/j.epsl.2018.07.035
op_rights Creative Commons Attribution 3.0 Unported
https://creativecommons.org/licenses/by/3.0/legalcode
cc-by-3.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.1594/pangaea.892422
https://doi.org/10.1016/j.epsl.2018.07.035
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spelling ftdatacite:10.1594/pangaea.892422 2023-05-15T13:40:08+02:00 Planktic carbon and oxygen isotopes and NGR-derived K, U and Th data, supplement to: De Vleeschouwer, David; Auer, Gerald; Smith, Rebecca; Bogus, Kara A; Christensen, Beth A; Groeneveld, Jeroen; Petrick, Benjamin F; Henderiks, Jorijntje; Castañeda, Isla S; O'Brian, Evan; Ellinghausen, Maret; Gallagher, Stephen John; Fulthorpe, Craig S; Pälike, Heiko (2018): The amplifying effect of Indonesian Throughflow heat transport on Late Pliocene Southern Hemisphere climate cooling. Earth and Planetary Science Letters, 500, 15-27 De Vleeschouwer, David Auer, Gerald Smith, Rebecca Bogus, Kara A Christensen, Beth A Groeneveld, Jeroen Petrick, Benjamin F Henderiks, Jorijntje Castañeda, Isla S O'Brian, Evan Ellinghausen, Maret Gallagher, Stephen John Fulthorpe, Craig S Pälike, Heiko 2018 application/zip https://dx.doi.org/10.1594/pangaea.892422 https://doi.pangaea.de/10.1594/PANGAEA.892422 en eng PANGAEA - Data Publisher for Earth & Environmental Science https://dx.doi.org/10.1016/j.epsl.2018.07.035 Creative Commons Attribution 3.0 Unported https://creativecommons.org/licenses/by/3.0/legalcode cc-by-3.0 CC-BY Integrated Ocean Drilling Program / International Ocean Discovery Program IODP Collection article Supplementary Collection of Datasets 2018 ftdatacite https://doi.org/10.1594/pangaea.892422 https://doi.org/10.1016/j.epsl.2018.07.035 2021-11-05T12:55:41Z An unusually short glaciation interrupted the warm Pliocene around 3.3 Ma (Marine Isotope Stage (MIS) M2). Different hypotheses exist to explain why this glaciation event was so pronounced, and why the global climate system returned to warm Pliocene conditions relatively quickly afterwards. One of these proposed mechanisms is a reduced equator-to-pole heat transfer, in response to a tectonically reduced Indonesian Throughflow (ITF). The ITF is a critical part of the global thermohaline ocean circulation, transporting heat from the Indo-Pacific Warm Pool to the Indian Ocean. When ITF connectivity is reduced, the water and heat supply for the Leeuwin Current, flowing poleward along Australia's west coast, is also diminished. To assess the possible relationship between mid-Pliocene glaciations and latitudinal heat transport through the Indonesian Throughflow, we constructed a multi-proxy orbital-scale record for the 3.7–2.8 Ma interval from International Ocean Discovery Program (IODP) Site U1463, off northwest Australia. The comparison of the Site U1463 record with paleoclimate records from nearby Site 763 and West Pacific Warm Pool Site 806 allows for a detailed regional reconstruction of Pliocene paleoceanography and thus for testing the proposed hypothesis.An astronomically-paced decrease in potassium content characterizes the late Pliocene interval of U1463. This record documents the increasing aridity of northwest Australia, periodically alleviated by reinforced summer monsoon precipitation under summer insolation maxima. The d18O record of the planktonic foraminifer Globigerinoides sacculifer correlates exceptionally well with the sea surface temperature (SST) record from Site 806 in the West Pacific Warm Pool, even during MIS M2. Hence, Site U1463 preserves an uninterrupted ITF signal even during Pliocene glaciations. However, the U1463 d18O G.sacculifer record exhibits a 0.5‰ offset with the nearby Site 763A record around MIS M2. This implies that Site 763A, about 500 km west of U1463, more closely tracks Indian Ocean SST records across MIS M2. The U1463 data reveal that heat-transport through the Indonesian Throughflow did not shut down completely during MIS M2, but rather its intensity decreased prior to and during MIS M2, causing Site 763A to temporarily reflect an Indian Ocean, rather than an ITF signal. We conclude that ITF variability significantly influenced latitudinal heat transport by means of the Leeuwin Current and hence contributed to the relative intensity of MIS M2. We propose the ITF valve between the Pacific and Indian Ocean as a positive feedback mechanism, in which an initial sea level lowering reduces ITF heat transport, in turn amplifying global cooling by advancing the thermal isolation of Antarctica. Article in Journal/Newspaper Antarc* Antarctica DataCite Metadata Store (German National Library of Science and Technology) Christensen ENVELOPE(47.867,47.867,-67.967,-67.967) Indian Pacific