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Characteristics of Pulsed Blue and Green Light Stimulated Luminescence Signals of Quartz and Feldspars

机译:脉冲蓝光和绿光激发石英和长石发光信号的特性

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The post-infrared (post-IR) pulsed blue light stimulated luminescence (PBLSL) signal has been employed to determine the equivalent dose (De) of feldspar contaminated quartz grains, but it sometimes suffers from the interference of feldspars. Since the green light stimulated luminescence (GLSL) signal of feldspars might be more reduced by a prior IR stimulation, we compared the characteristics of post-IR PBLSL and post-IR pulsed GLSL (post-IR PGLSL) signals of quartz and feldspars in this study to evaluate the feasibility of employing the green light for pulsed stimulation. We investigated the effect of the signal integration period, pulsed stimulation temperature, and prior IR stimulation temperature on the intensities of post-IR PBLSL and post-IR PGLSL of quartz and feldspars, and evaluated the potential feldspar interference on these two signals for the hypothetical and artificial quartz-feldspar mixture. The results demonstrate a lower feldspars contribution for the post-IR PGLSL signal. The feldspar interference only slightly increases with the increase of integration period for the post-IR PGLSL signal measured at low stimulation temperature, which permits a long integration period to be employed to enhance the signal to noise ratio. This study shows that the green light is a promising alternative for pulsed stimulation to suppress the feldspar contribution.
机译:红外后(post-IR)脉冲蓝光受激发光(PBLSL)信号已被用于确定长石污染石英颗粒的等效剂量(De),但它有时会受到长石的干扰。由于长石的绿光激发发光(GLSL)信号可能因先前的红外刺激而降低,因此本研究比较了石英和长石的红外后PBLSL和红外后脉冲GSSL(红外后PGLSL)信号的特性,以评估采用绿光进行脉冲刺激的可行性。研究了信号积分周期、脉冲刺激温度和先前红外刺激温度对石英和长石红外后PBLSL和红外后PGLSL强度的影响,并评估了假设和人造石英-长石混合物对这两种信号的潜在长石干扰。结果表明,长石对红外PGLSL后信号的贡献较低。在低刺激温度下测量的红外PGLSL后信号的积分周期增加,长石干扰仅略有增加,因此可以采用较长的积分周期来增强信噪比。这项研究表明,绿光是脉冲刺激抑制长石贡献的一种有前途的替代方案。

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