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Optically Stimulated Luminescence Sensitivity of Quartz for Provenance Analysis

机译:光学刺激的石英发光敏感性敏感性分析

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摘要

Finding the source or provenance of quartz grains occurring in a specific location allows us to constrain their transport pathway, which is crucial information to solve diverse problems in geosciences and related fields. The optically stimulated luminescence (OSL) sensitivity (light intensity per unit mass per unit radiation dose) has a high capacity for discrimination of quartz sediment grains and represents a promising technique for provenance analysis. In this study, we tested the use of quartz OSL sensitivity (ultraviolet emission) measured under different preheating temperatures and with blue light stimulation at room temperature (~20 °C) for sediment provenance analysis. Quartz OSL sensitivity measured at 20 °C is positively correlated with the sensitivity of an OSL signal measured using procedures (preheat at 190 °C for 10 s, blue stimulation at 125 °C and initial 1 s of light emission) to increase the contribution of the fast OSL component, which has been successfully applied for sediment provenance analysis. The higher OSL signal intensity measured without preheating and with light stimulation at room temperature allows the use of lower given doses, thus reducing measurement time. Additionally, the OSL sensitivity measured at 20 °C in polymineral silt samples of a marine sediment core is also suitable for provenance analysis, as demonstrated by comparison with other independent proxies. OSL signals obtained through light stimulation at room temperature have thus the potential to considerably expand measurement possibilities, including in situ measurements using portable OSL readers.
机译:在特定位置发现的石英粒的源或出处允许我们限制其运输途径,这是解决地球科学和相关领域不同问题的重要信息。光学刺激的发光(OSL)灵敏度(每单位辐射剂量的每单位质量的光强度)具有高容量的石英沉积物颗粒,并且代表了出种的出种技术。在这项研究中,我们测试了在不同预热温度下测量的石英OSL灵敏度(紫外发射)和在室温(〜20°C)下的蓝光刺激进行沉积物出处分析。在20℃下测量的石英OSL灵敏度与使用程序测量的OSL信号的灵敏度正相关(在190℃下预热10秒,在125°C时的蓝色刺激和光发射的初始1秒)以增加贡献快速OSL组件,已成功应用于沉积物出处分析。测量的较高的OSL信号强度而不预热并在室温下具有光刺激允许使用下部给定剂量,从而降低测量时间。另外,在海洋沉积物核心的聚合物淤泥样品中在20℃下测量的OSL灵敏度也适用于出现分析,如与其他独立代理相比所证明的。因此,通过在室温下通过光刺激获得的OSL信号具有相当大的扩展测量可能性的潜力,包括使用便携式OSL读取器的原位测量。

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