Precise date for the Laacher See eruption synchronizes the Younger Dryas
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41586-021-03608-x.pdf
Reference79 articles.
1. Schmincke, H.-U. in Mantle Plumes (eds Ritter, J. R. R. & Christensen, U. R.) 241–322 (Springer, 2007).
2. Schmincke, H.-U., Park, C. & Harms, E. Evolution and environmental impacts of the eruption of Laacher See Volcano (Germany) 12,900 a BP. Quat. Int. 61, 61–72 (1999).
3. Lane, C. S., Blockley, S. P. E., Bronk Ramsey, C. & Lotter, A. F. Tephrochronology and absolute centennial scale synchronisation of European and Greenland records for the last glacial to interglacial transition: a case study of Soppensee and NGRIP. Quat. Int. 246, 145–156 (2011).
4. Reinig, F. et al. Towards a dendrochronologically refined date of the Laacher See eruption around 13,000 years ago. Quat. Sci. Rev. 229, 106128 (2020).
5. Brauer, A., Endres, C. & Negendank, J. F. W. Lateglacial calendar year chronology based on annually laminated sediments from Lake Meerfelder Maar, Germany. Quat. Int. 61, 17–25 (1999).
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