Articles | Volume 12, issue 4
https://doi.org/10.5194/cp-12-1079-2016
https://doi.org/10.5194/cp-12-1079-2016
Research article
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26 Apr 2016
Research article | Highlight paper |  | 26 Apr 2016

A Late Pleistocene sea level stack

Rachel M. Spratt and Lorraine E. Lisiecki

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Cited articles

Abe-Ouchi, A., Saito, F., Kawamura, K., Raymo, M. E., Okuno, J., Takahashi, K., and Blatter, H.: Insolation-driven 100,000-year glacial cycles and hysteresis of ice-sheet volume, Nature, 500, 190–193, https://doi.org/10.1038/nature12374, 2013.
Adkins, J. F., McIntyre, K., and Schrag, D. P.: The Salinity, Temperature, and δ18O of the Glacial Deep Ocean, Science, 298, 1769–1773, https://doi.org/10.1126/science.1076252, 2002.
Andersen, M. B., Stirling, C. H., Potter, E. K., Halliday, A. N., Blake, S. G., Mc-Culloch, M. T., Ayling, B. F., and O'Leary, M.: High-precision U-series measurements of more than 500,000 year old fossil corals, Earth Planet. Sc. Lett., 265, 229–245, 2008.
Bard, E., Hamelin, B., Fairbanks, R. G., and Zindler, A.: Calibration of the 14C timescale over the past 30,000 years using mass spectrometric U–Th ages from Barbados corals, Nature, 345, 405-410, 1990.
Bard, E., Hamelin, B., Arnold, M., Montaggioni, L., Cabioch, G., Faure, G., and Rougerie, F.: Deglacial sea-level record from Tahiti corals and the timing of global meltwater discharge, Nature, 382, 241–244, https://doi.org/10.1038/382241a0, 1996.
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Short summary
This study presents an average of seven Late Pleistocene sea level records, which improves the signal-to-noise ratio for estimates of sea level change during glacial cycles of the past 800 000 years.