Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw
The presence of a low-to mid-latitude interhemispheric hydrologic seesaw is apparent over orbital and glacial-interglacial timescales, but its existence over the most recent past remains unclear. Here we investigate, based on climate proxy reconstructions from both hemispheres, the inter-hemispheric...
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ftleibnizopen:oai:oai.leibnizopen.de:CUqjqIgBdbrxVwz6Swol 2023-07-02T03:33:07+02:00 Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw Lechleitner, F.A. Breitenbach, S.F.M. Rehfeld, K. Ridley, H.E. Asmerom, Y. Prufer, K.M. Marwan, N. Goswami, B. Kennett, D.J. Aquino, V.V. Polyak, V. Haug, G.H. Eglinton, T.I. Baldini, J.U.L. 2017 application/pdf https://oa.tib.eu/renate/handle/123456789/5173 https://doi.org/10.34657/3802 eng eng London : Nature Publishing Group CC BY 4.0 Unported https://creativecommons.org/licenses/by/4.0/ Scientific Reports 7 (2017) hydrologic seesaw rainfall ITCZ 550 article Text 2017 ftleibnizopen https://doi.org/10.34657/3802 2023-06-11T23:29:45Z The presence of a low-to mid-latitude interhemispheric hydrologic seesaw is apparent over orbital and glacial-interglacial timescales, but its existence over the most recent past remains unclear. Here we investigate, based on climate proxy reconstructions from both hemispheres, the inter-hemispherical phasing of the Intertropical Convergence Zone (ITCZ) and the low-to mid-latitude teleconnections in the Northern Hemisphere over the past 2000 years. A clear feature is a persistent southward shift of the ITCZ during the Little Ice Age until the beginning of the 19th Century. Strong covariation between our new composite ITCZ-stack and North Atlantic Oscillation (NAO) records reveals a tight coupling between these two synoptic weather and climate phenomena over decadal-to-centennial timescales. This relationship becomes most apparent when comparing two precisely dated, high-resolution paleorainfall records from Belize and Scotland, indicating that the low-to mid-latitude teleconnection was also active over annual-decadal timescales. It is likely a combination of external forcing, i.e., solar and volcanic, and internal feedbacks, that drives the synchronous ITCZ and NAO shifts via energy flux perturbations in the tropics. publishedVersion Article in Journal/Newspaper North Atlantic North Atlantic oscillation LeibnizOpen (The Leibniz Association) |
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op_collection_id |
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English |
topic |
hydrologic seesaw rainfall ITCZ 550 |
spellingShingle |
hydrologic seesaw rainfall ITCZ 550 Lechleitner, F.A. Breitenbach, S.F.M. Rehfeld, K. Ridley, H.E. Asmerom, Y. Prufer, K.M. Marwan, N. Goswami, B. Kennett, D.J. Aquino, V.V. Polyak, V. Haug, G.H. Eglinton, T.I. Baldini, J.U.L. Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw |
topic_facet |
hydrologic seesaw rainfall ITCZ 550 |
description |
The presence of a low-to mid-latitude interhemispheric hydrologic seesaw is apparent over orbital and glacial-interglacial timescales, but its existence over the most recent past remains unclear. Here we investigate, based on climate proxy reconstructions from both hemispheres, the inter-hemispherical phasing of the Intertropical Convergence Zone (ITCZ) and the low-to mid-latitude teleconnections in the Northern Hemisphere over the past 2000 years. A clear feature is a persistent southward shift of the ITCZ during the Little Ice Age until the beginning of the 19th Century. Strong covariation between our new composite ITCZ-stack and North Atlantic Oscillation (NAO) records reveals a tight coupling between these two synoptic weather and climate phenomena over decadal-to-centennial timescales. This relationship becomes most apparent when comparing two precisely dated, high-resolution paleorainfall records from Belize and Scotland, indicating that the low-to mid-latitude teleconnection was also active over annual-decadal timescales. It is likely a combination of external forcing, i.e., solar and volcanic, and internal feedbacks, that drives the synchronous ITCZ and NAO shifts via energy flux perturbations in the tropics. publishedVersion |
format |
Article in Journal/Newspaper |
author |
Lechleitner, F.A. Breitenbach, S.F.M. Rehfeld, K. Ridley, H.E. Asmerom, Y. Prufer, K.M. Marwan, N. Goswami, B. Kennett, D.J. Aquino, V.V. Polyak, V. Haug, G.H. Eglinton, T.I. Baldini, J.U.L. |
author_facet |
Lechleitner, F.A. Breitenbach, S.F.M. Rehfeld, K. Ridley, H.E. Asmerom, Y. Prufer, K.M. Marwan, N. Goswami, B. Kennett, D.J. Aquino, V.V. Polyak, V. Haug, G.H. Eglinton, T.I. Baldini, J.U.L. |
author_sort |
Lechleitner, F.A. |
title |
Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw |
title_short |
Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw |
title_full |
Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw |
title_fullStr |
Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw |
title_full_unstemmed |
Tropical rainfall over the last two millennia: Evidence for a low-latitude hydrologic seesaw |
title_sort |
tropical rainfall over the last two millennia: evidence for a low-latitude hydrologic seesaw |
publisher |
London : Nature Publishing Group |
publishDate |
2017 |
url |
https://oa.tib.eu/renate/handle/123456789/5173 https://doi.org/10.34657/3802 |
genre |
North Atlantic North Atlantic oscillation |
genre_facet |
North Atlantic North Atlantic oscillation |
op_source |
Scientific Reports 7 (2017) |
op_rights |
CC BY 4.0 Unported https://creativecommons.org/licenses/by/4.0/ |
op_doi |
https://doi.org/10.34657/3802 |
_version_ |
1770272925631381504 |