Annual 14C Tree-Ring Data Around 400 AD: Mid- and High-Latitude Records

Author:

Friedrich Ronny,Kromer Bernd,Sirocko Frank,Esper Jan,Lindauer SusanneORCID,Nievergelt Daniel,Heussner Karl Uwe,Westphal Thorsten

Abstract

ABSTRACTTwo tree-ring series, one from a high-latitude pine tree (located in northern Scandinavia) and one from a mid-latitude oak tree (located in eastern Germany) were analyzed for radiocarbon (14C) at annual resolution. The new records cover the calendar date ranges 290–460 AD and 382–486 AD, respectively, overlapping by 79 yr. The series show similar trends as IntCal13. However, some significant deviations around 400 AD are present with lower Δ14C (higher 14C ages). An average offset between the two new series and IntCal13 of about 20 years in conventional 14C age is observed. A latitudinal 14C offset between the tree sites in central and northern Europe, as would be expected due to the relatively large spatial distance, is not recorded, however. Periodic changes in the 14C records are resolved that can be attributed to the “11-year” solar cycle (Schwabe cycle) with cycle length from 9 to 11 years. The magnitude of changes in Δ14C due to the solar cycle is between 1.5 and 3‰. Since solar cyclicity is only partially synchronous between the two new series, reasons for asynchronicity are explored.

Publisher

Cambridge University Press (CUP)

Subject

General Earth and Planetary Sciences,Archeology

Reference49 articles.

1. A history of solar activity over millennia

2. Tree-ring widths of Pinus sylvestris of tree samples Kom1213175a;Esper;Curt-Engelhorn-Zentrum Archäometrie gGmbH,2018

3. Technical advance in the radiodensitometrical determination of wood density;Eschbach;Dendrochronologia,1995

4. Solar influence on winter severity in central Europe

5. Solar forcing synchronizes decadal North Atlantic climate variability

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