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首页> 外文期刊>Quaternary geochronology >Optical dating of quartz and feldspars: A comparative study from Wonderkrater, a Middle Stone Age site of South Africa
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Optical dating of quartz and feldspars: A comparative study from Wonderkrater, a Middle Stone Age site of South Africa

机译:石英和长石的光学测年:来自南非中石器时代遗址Wonderkrater的比较研究

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摘要

While quartz is the most used dosimeter, it has been shown that feldspars provide many advantages over quartz, essentially in terms of reproducibility and sensitivity. Unfortunately, they also suffer from instability in their luminescence signal, known as anomalous fading, which leads to an underestimation in age if no correction is applied in a spring and peat mound archaeological context, we explore the possibility of obtaining a single age for both quartz and feldspar fractions from the same sample. This work first highlights the importance of selecting two dosimeters in an archaeological or geological context. It also put in the foreground the time-consuming but gratifying approach of comparing large and small aliquots. Finally, we present feldspars with a barely detectable and measurable fading rate, whatever the protocol applied, suggesting that the solution to anomalous fading might be to find feldspar grains that do not fade.
机译:尽管石英是最常用的剂量计,但已证明长石在重现性和灵敏度方面都比石英具有许多优势。不幸的是,如果它们在春季和泥炭丘的考古环境中不进行校正,它们的发光信号也将不稳定,这被称为异常衰落,如果不进行校正,则会导致年龄的低估,我们探索了获得两个石英的单一年龄的可能性和相同样品中的长石馏分。这项工作首先强调了在考古或地质背景下选择两个剂量计的重要性。它还把比较大和小的等分试样的费时但令人满意的方法放在了前台。最后,无论采用何种协议,我们都向长石呈现几乎无法检测和可测量的褪色速率,这表明解决异常褪色的方法可能是找到不会褪色的长石晶粒。

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