首页> 外文期刊>Radiocarbon >THE 12,460-YEAR HOHENHEIM OAK AND PINE TREE-RING CHRONOLOGY FROM CENTRAL EUROPE-A UNIQUE ANNUAL RECORD FOR RADIOCARBON CALIBRATION AND PALEOENVIRONMENT RECONSTRUCTIONS
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THE 12,460-YEAR HOHENHEIM OAK AND PINE TREE-RING CHRONOLOGY FROM CENTRAL EUROPE-A UNIQUE ANNUAL RECORD FOR RADIOCARBON CALIBRATION AND PALEOENVIRONMENT RECONSTRUCTIONS

机译:来自欧洲中部的12460年Hohenheim橡树和松树年轮年代学-放射性碳校准和古环境重建的唯一年度记录

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The combined oak and pine tree-ring chronologies of Hohenheim University are the backbone of the Holocene radiocarbon calibration for central Europe. Here, we present the revised Holocene oak chronology (HOC) and the Preboreal pine chronology (PPC) with respect to revisions, critical links, and extensions. Since 1998, the HOC has been strengthened by new trees starting at 10,429 BP (8480 BC). Oaks affected by cockchafer have been identified and discarded from the chronology. The formerly floating PPC has been cross-matched dendrochronologically to the absolutely dated oak chronology, which revealed a difference of only 8 yr to the published 14C wiggle-match position used for IntCal98. The 2 parts of the PPC, which were linked tentatively at 11,250 BP, have been revised and strengthened by new trees, which enabled us to link both parts of the PPC dendrochronologically. Including the 8-yr shift of the oak-pine link, the older part of the PPC (pre-11,250 BP) needs to be shifted 70 yr to older ages with respect to the published data (Spurk 1998). The southern German part of the PPC now covers 2103 yr from 11,993-9891 BP (10,044-7942 BC). In addition, the PPC was extended significantly by new pine chronologies from other regions. A pine chronology from Avenches and Zurich, Switzerland, and another from the Younger Dryas forest of Cottbus, eastern Germany, could be crossdated and dendrochronologically matched to the PPC. The absolutely dated tree-ring chronology now extends back to 12,410 calBP (10,461 BC). Therefore, the tree-ring-based ~(14)C calibration now reaches back into the Central Younger Dryas. With respect to the Younger Dryas-Preboreal transition identified in the ring width of our pines at 11,590 BP, the absolute tree-ring chronology now covers the entire Holocene and 820 yr of the Younger Dryas.
机译:霍恩海姆大学的橡树和松树年轮组合年表是中欧全新世放射性碳标定的基础。在这里,我们针对修订版,关键链接和扩展版,介绍了修订后的全新世橡树年表(HOC)和早松树年表(PPC)。自1998年以来,从10,429 BP(公元前8480年)开始,通过新树加强了HOC。受金龟子影响的橡树已被鉴定并从年表中丢弃。以前浮动的PPC已在树状年代学上与绝对过时的橡树年代学上进行了交叉匹配,与已发布的用于IntCal98的14C摆动匹配位置相差仅8年。 PPC的两个部分已在11250 BP临时连接,并通过新树进行了修订和加强,这使我们能够按时间顺序将PPC的两个部分连接起来。包括橡树松木链接的8年偏移,相对于已发布的数据,PPC的较早部分(11,250 BP之前)需要向更老的年龄偏移70年(Spurk 1998)。 PPC的德国南部现在从11993-9891 BP(公元前10044-7942年)开始覆盖2103年。此外,其他地区的新松树年代也大大扩展了PPC。来自Avenches和瑞士苏黎世的松树年代学,以及来自德国东部科特布斯的Younger Dryas森林的另一种松树年表,可以在树龄上与PPC相匹配。现在,绝对过时的树年轮年代可以追溯到12,410 calBP(10,461 BC)。因此,基于树环的〜(14)C校准现在可以追溯到Central Younger Dryas。关于在我们的松树的环宽为11,590 BP时确定的Younger Dryas-Preboreal过渡,现在绝对的树年轮年表涵盖了Younger Dryas的整个全新世和820年。

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