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Application of newly developed NCF-SAR protocol to Quaternary sediments from Suncheon and Jeongok, South Korea

机译:新开发的NCF-SAR协议在韩国顺天市和正岳第四纪沉积物中的应用

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摘要

Present study is an attempt to test the applicability of recently developed natural sensitivity corrected single aliquot regeneration (NCF-SAR) protocol for samples from archaeological sites of South Korea. The protocol monitors the sensitivity change during measurement of natural OSL (Optically Stimulated Luminescence) signal and provides a methodology to correct for it. The natural OSL signals in the quartz samples from Suncheon (fluvial) and Jeongok (aeolian) sites were either in dose saturation region or lying well above the luminescence dose response curve, suggesting the possibility of sensitivity changes during natural OSL signal measurements. These samples thus provide opportunity to test the NCF-SAR protocol. The results suggest that, for the samples examined in this study, there are significant sensitivity changes during the natural OSL signal measurements. The ratio of TL (Thermoluminescence) peaks before and after natural OSL measurement was used to correct for the sensitivity changes. The dose distribution obtained using NCF had less scatter. However, in some cases, even the NCF correction could not resolve the issue of natural signal lying above saturation dose, indicating some other unidentified factors are also responsible for this oversaturation of quartz OSL signal.
机译:当前的研究是为了测试最近开发的自然敏感性校正的单等分试样再生(NCF-SAR)协议对来自韩国考古现场的样品的适用性。该协议监视自然OSL(光学刺激发光)信号的测量过程中的灵敏度变化,并提供一种校正方法。来自顺天(河流)和Jeongok(风沙)地点的石英样品中的天然OSL信号处于剂量饱和区或远高于发光剂量响应曲线,这表明在天然OSL信号测量期间灵敏度可能发生变化。这些样本因此提供了测试NCF-SAR协议的机会。结果表明,对于本研究中检测到的样品,在自然OSL信号测量过程中灵敏度存在明显变化。在自然OSL测量之前和之后的TL(热发光)峰比率用于校正灵敏度变化。使用NCF获得的剂量分布散布较少。但是,在某些情况下,即使NCF校正也无法解决高于饱和剂量的自然信号的问题,这表明石英OSL信号的这种过饱和也与其他一些未知因素有关。

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