Abstract
We compare paleoclimate proxy records from central Greenland and the Aegean Sea to offer new insights into the causes, timing, and mechanisms of Holocene atmosphere-ocean interactions. A direct atmospheric link is revealed between Aegean sea surface temperature (SST) and high-latitude climate. The major Holocene events in our proxies of Aegean SST and winter/spring intensity of the Siberian High (GISP2 K+ record) follow an Ο2300 year spacing, recognised also in the Δ14C record and in worldwide Holocene glacier advance phases, suggesting a solar modulation of climate. We argue that the primary atmospheric response involved decadal-centennial fluctuations in the meridional pressure gradient, driving Aegean SST events via changes in the strength, duration, and/or frequency of northerly polar/continental air outbreaks over the basin. The observed natural variability should be accounted for in predictions of future climate change, and our time- frame for the Aegean climate events in addition provides an independent chronostratigraphic argument to Middle Eastern archaeological studies.
Cite
CITATION STYLE
Rohling, E., Mayewski, P., Abu-Zied, R., Casford, J., & Hayes, A. (2002). Holocene atmosphere-ocean interactions: Records from Greenland and the Aegean sea. Climate Dynamics, 18(7), 587–594. https://doi.org/10.1007/s00382-001-0194-8
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.