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On the intrinsic accuracy and precision of the standardised growth curve (SGC) and global-SGC (gSGC) methods for equivalent dose determination: A simulation study

机译:关于等效剂量确定的标准生长曲线(SGC)和全局SGC(gSGC)方法的固有准确性和精确度:模拟研究

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摘要

In optically stimulated luminescence (OSL) dating, the single aliquot regenerative-dose (SAR) method has been used extensively for determining equivalent doses (De) in quartz. A variation of the SAR method is the “standardised growth curve” (SGC) method, which has been used as an efficient procedure to save measurement time during dating studies. During the application of the SGC method one establishes the SGC and calculation of the De of an aliquot requires only measurement of the standardised natural dose signal. Recently, a “global standardised growth curve” (gSGC) method was developed as an improved version of the SGC procedure. During the application of the gSGC method, the growth curves are re-normalised using sensitivity-corrected signal corresponding to one of the regenerative doses. Subsequently the De of an aliquot is estimated using the sensitivity-corrected natural dose signal and an additional sensitivity-corrected regenerative dose signal as well as the established gSGC. In the present study, simulations are performed to assess the intrinsic accuracy and precision of the SGC and gSGC De estimates. The results of our simulations validate that the gSGC method is intrinsically more precise than the SGC method and is also more accurate for doses greater than 210 Gy. Several factors which affect the reliability of the two methods are investigated.
机译:在光学激发发光(OSL)测年中,单等分再生剂量(SAR)方法已广泛用于确定石英的等效剂量(De)。 SAR方法的一种变化是“标准生长曲线”(SGC)方法,它已被用作一种有效的程序,可以节省约会研究期间的测量时间。在应用SGC方法期间,将建立SGC,计算等份De只需测量标准自然剂量信号。最近,开发了“全球标准化生长曲线”(gSGC)方法,作为SGC程序的改进版本。在应用gSGC方法期间,使用对应于再生剂量之一的灵敏度校正信号将生长曲线重新归一化。随后,使用灵敏度校正的自然剂量信号和附加的灵敏度校正的再生剂量信号以及已建立的gSGC估算等分试样的De。在本研究中,进行仿真以评估SGC和gSGC De估计的内在准确性和精确度。我们的模拟结果验证了gSGC方法本质上比SGC方法更精确,并且对于大于210 Gy的剂量也更准确。研究了影响这两种方法可靠性的几个因素。

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