δ18O time-series analyzed in G. ruber w. in sediment core SO126-39KL recovered from the northern Bay of Bengal

Ocean‐land thermal feedback mechanisms in the Indian Summer Monsoon (ISM) domain are an important but not well understood component of regional climate dynamics. Here we present a δ18O record analyzed in the mixed‐layer dwelling planktonic foraminifer Globigerinoides ruber (sensu stricto) from the northernmost Bay of Bengal (BoB). The δ18O time series provides a spatially integrated measure of monsoonal precipitation and Himalayan meltwater runoff into the northern BoB, and reveals two brief episodes of anomalously low δ18O values between 16.3±0.4 and 16±0.5 and 12.6±0.4 and 12.3±0.4 kyr BP. The timing of these events is centered at Heinrich Event 1 and the Younger Dryas, well‐known phases of weak northern hemisphere monsoon systems. Numerical climate model experiments, simulating Heinrich event‐like conditions, suggest a surface warming over the monsoon‐dominated Himalaya and foreland in response to ISM weakening. Corroborating the simulation results, our analysis of published moraine exposure ages in the monsoon‐dominated Himalaya indicates enhanced glacier retreats that, considering age model uncertainties, coincide and overlap with the episodes of anomalously low δ18O values in the northernmost BoB. Our climate proxy and simulation results provide insights into past regional climate dynamics suggesting reduced cloud cover, increased solar radiation, and air warming of the Himalaya and foreland areas and, as a result, glacier mass losses in response to weakened ISM.

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Cite this as

Weldeab, Syee, Rühlemann, Carsten, Bookhagen, Bodo, Pausata, Francesco S R, Perez-Lua, M Fabiola (2019). Dataset: δ18O time-series analyzed in G. ruber w. in sediment core SO126-39KL recovered from the northern Bay of Bengal. https://doi.org/10.1594/PANGAEA.901396

DOI retrieved: 2019

Additional Info

Field Value
Imported on November 29, 2024
Last update November 29, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.901396
Author Weldeab, Syee
Given Name Syee
Family Name Weldeab
More Authors
Rühlemann, Carsten
Bookhagen, Bodo
Pausata, Francesco S R
Perez-Lua, M Fabiola
Source Creation 2019
Publication Year 2019
Resource Type text/tab-separated-values - filename: Weldeab-etal_2019
Subject Areas
Name: Chemistry

Name: Geophysics

Name: Lithosphere

Related Identifiers
Title: Enhanced Himalayan glacial melting during YD and H1 recorded in the northern Bay of Bengal
Identifier: https://doi.org/10.1029/2018GC008065
Type: DOI
Relation: IsSupplementTo
Year: 2019
Source: Geochemistry, Geophysics, Geosystems
Authors: Weldeab Syee , Rühlemann Carsten , Bookhagen Bodo , Pausata Francesco S R , Perez-Lua M Fabiola .