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单颗粒石英光释光特征:亚洲、欧洲和非洲不同地点内部及之间的相关性测试

Single-Grain Quartz OSL Characteristics: Testing for Correlations within and between Sites in Asia, Europe and Africa.

作者信息

Hu Yue, Li Bo, Jacobs Zenobia

机构信息

Department of Archaeology, School of History and Culture, Sichuan University, Chengdu 610207, China.

Centre for Archaeological Science, School of Earth and Environmental Science, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Methods Protoc. 2019 Dec 26;3(1):2. doi: 10.3390/mps3010002.

Abstract

We studied the characteristics of the optically stimulated luminescence (OSL) signal of single-grain quartz from three sites in China, Italy, and Libya, including the brightness, decay curve and dose response curve (DRC) shapes, recuperation, and reproducibility. We demonstrate the large variation in OSL behaviors for individual quartz grains of different samples from different regions, and show that recuperation, sensitivity change, and reproducibility are independent of the brightness and decay curve shape of the OSL signals. The single-grain DRCs can be divided into at least eight groups with different characteristic saturation doses (D), and a standardized growth curve (SGC) can be established for each of the DRC groups. There is no distinctive difference in the shape of OSL decay curves among different DRC groups, but samples from different regions have a difference in the OSL sensitivities and decay shapes for different groups. Many of the quartz grains have low D values (30-50 Gy), and more than 99% of the grains have D values of <200 Gy. Our results raise caution against the dating of samples with equivalent dose values higher than 100 Gy, if there are many low-D and 'saturated' grains.

摘要

我们研究了来自中国、意大利和利比亚三个地点的单颗粒石英的光激发发光(OSL)信号特征,包括亮度、衰减曲线和剂量响应曲线(DRC)形状、恢复情况以及可重复性。我们证明了来自不同地区的不同样品中单个石英颗粒的OSL行为存在很大差异,并表明恢复情况、灵敏度变化和可重复性与OSL信号的亮度和衰减曲线形状无关。单颗粒DRC可分为至少八组,具有不同的特征饱和剂量(D),并且可以为每个DRC组建立标准化生长曲线(SGC)。不同DRC组之间的OSL衰减曲线形状没有明显差异,但来自不同地区的样品在不同组的OSL灵敏度和衰减形状上存在差异。许多石英颗粒的D值较低(30 - 50 Gy),超过99%的颗粒D值小于200 Gy。如果存在许多低D值和“饱和”颗粒,我们的结果提醒人们在对等效剂量值高于100 Gy的样品进行测年时要谨慎。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34aa/7189676/bf5a1aff607f/mps-03-00002-g001.jpg

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