Deuterium isotope ratios of Victoria Lower Glacier Ice Core


Autoria(s): Bertler, Nancy A; Mayewski, Paul A; Carter, Lionel
Cobertura

LATITUDE: -77.330000 * LONGITUDE: 162.533000

Data(s)

17/10/2011

Resumo

The Little Ice Age (LIA) is one of the most prominent climate shifts in the past 5000 yrs. It has been suggested that the LIA might be the most recent of the Dansgaard-Oeschger events, which are better known as abrupt, large scale climate oscillations during the last glacial period. If the case, then according to Broecker (2000a, 2000b) Antarctica should have warmed during the LIA, when the Northern Hemisphere was cold. Here we present new data from the Ross Sea, Antarctica, that indicates surface temperatures were ~2 °C colder during the LIA, with colder sea surface temperatures in the Southern Ocean and/or increased sea-ice extent, stronger katabatic winds, and decreased snow accumulation. Whilst we find there was large spatial and temporal variability, overall Antarctica was cooler and stormier during the LIA. Although temperatures have warmed since the termination of the LIA, atmospheric circulation strength has remained at the same, elevated level. We conclude, that the LIA was either caused by alternative forcings, or that the sea-saw mechanism operates differently during warm periods.

Formato

application/zip, 2 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.866368

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Bertler, Nancy A; Mayewski, Paul A; Carter, Lionel (2011): Cold conditions in Antarctica during the Little Ice Age - Implications for abrupt climate change mechanisms. Earth and Planetary Science Letters, 308(1-2), 41-51, doi:10.1016/j.epsl.2011.05.021

Palavras-Chave #Age; AGE; dD H2O; delta Deuterium, water; DEPTH, ice/snow; Depth ice/snow; Depth of volcanic peak; ICEDRILL; Ice drill; Isotope ratio mass spectrometry; Ross Sea Region, Antarctica; VLG_DSS; VLG date (CE), volcanic synchronisation; Volcanic event peak date (CE), dated using volcanic signatures in SO4 concentrations.; vs. VSMOW, hydrogen isotope ratio of H:D in H2O from melted ice compared to standard mean ocean water
Tipo

Dataset