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Our oldest children: Age constraints for the Krems-Wachtberg site obtained from various thermoluminescence dating approaches

机译:我们最大的孩子:通过各种热发光测年方法获得的克雷姆斯-瓦特堡遗址的年龄限制

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摘要

We present several approaches to directly date the prehistoric human activity of lighting a fire at the Early Gravettian infant burial site of Krems-Wachtberg (Austria) by thermoluminescence (TL) methods. Blue thermoluminescence (B-TL) from polymineral fine grain and orange-red thermoluminescence (R-TL) from fine-grained quartz separates, both extracted from the baked loess immediately underlying the hearth were employed. The B-TL dating followed the "classic" multiple aliquot-additive dose (MAAD) protocol. For R-TL dating, the multiple aliquot-regenerative (MAR) and a shortened single-aliquot-regeneration (SAR) protocol were tested. All thermoluminescence ages obtained agree within 1-σ uncertainties and assign a weighted mean age of 33.9 ± 2.3 ka to the last use of the hearth and by inference to the infant burial. Anomalous fading is precluded due to the agreement of results from all luminescence protocols as well as with independent dating methods. The TL ages are consistent with calibrated radiocarbon ages on associated charcoal, OSL dating of the sediment deposition and with age estimates obtained by two magnetic dating approaches.
机译:我们提出了几种方法,可以通过热发光(TL)方法直接对史前人类活动在克雷姆斯-瓦特堡(奥地利)的Gravettian早期婴儿葬礼现场点火生火。采用多矿物细颗粒的蓝色热致发光(B-TL)和细晶粒石英分离物的橙红色热致发光(R-TL),两者均从紧接炉床下面的烘烤黄土中提取。 B-TL约会遵循“经典”多次等分加性剂量(MAAD)方案。对于R-TL约会,测试了多重等分再生(MAR)和缩短的单等分再生(SAR)方案。获得的所有热致发光年龄均在1-σ不确定度之内,并为炉膛的最后一次使用和婴儿埋葬推断出加权平均年龄为33.9±2.3 ka。由于所有发光方案以及独立的定年方法的结果一致,因此可以防止出现异常褪色。 TL年龄与相关木炭的校准放射性碳年龄,沉积物沉积的OSL测年以及通过两种磁性测年方法获得的年龄估计值一致。

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  • 来源
    《Quaternary International》 |2014年第17期|83-87|共5页
  • 作者单位

    Lehrstuhl Geomorphologie, University of Bayreuth, Universitaetsstr. 30, 95447 Bayreuth, Germany;

    Lehrstuhl Geomorphologie, University of Bayreuth, Universitaetsstr. 30, 95447 Bayreuth, Germany,Department of Human Evolution, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, 04103 Leipzig, Germany;

    Steinmann Institute, University of Bonn, Poppelsdorfer Schloss, 53115 Bonn, Germany;

    Department of Prehistoric Archaeology, Institute for Mediterranean and Prehistoric Archaeology (IMPArch), Austrian Academy of Sciences, Fleischmarkt 22, 1010 Vienna, Austria;

    Department of Prehistoric Archaeology, Institute for Mediterranean and Prehistoric Archaeology (IMPArch), Austrian Academy of Sciences, Fleischmarkt 22, 1010 Vienna, Austria;

    Department of Prehistoric Archaeology, Institute for Mediterranean and Prehistoric Archaeology (IMPArch), Austrian Academy of Sciences, Fleischmarkt 22, 1010 Vienna, Austria;

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