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An in-situ, fiber-optic system for sub-surface, environmental dose measurements using radiophotoluminescence from Ag-doped alkali-phosphate glass

机译:用于子表面的原位,光纤系统,使用来自Ag掺杂的碱磷酸盐玻璃的放射磷光荧光的环境剂量测量

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摘要

The feasibility of using radiophotoluminescence from Ag-doped alkali-phosphate glass as an in-situ, sub-surface environmental radiation monitor is examined. GD-302M glass from Chiyoda Technol Corporation was attached to the end of a silica optical fiber inside a stainless-steel probe and inserted into soil to a depth of similar to 1 m. Radiophotoluminescence (RPL) from the GD-302M detectors was stimulated along the fiber using a 355 nm pulsed laser and RPL emission was directed along the same fiber and detected by a photomultiplier tube. Restrictions on the average laser power to be used in the experiments were observed due to the creation of an RPL signal for a zero-dose sample, or depletion of the radiation-induced signal from an irradiated sample. Short (1 s), low-frequency (1 kHz) laser stimulation rendered such effects negligible, while providing sufficient sensitivity to enable measurements of environmental doses of similar to 100 mu Gy.
机译:研究了使用从掺杂的Ag掺杂的碱磷酸玻璃作为原位,子表面环境辐射监测仪的可行性。 Chiyoda Technol Corporation的GD-302M玻璃连接到硅胶纤维内的末端,在不锈钢探针内,插入土壤,深度与1米相似。 通过使用355nm脉冲激光器沿光纤刺激来自GD-302M探测器的放射性酚(RPL),并且RPL发射沿相同的纤维引导并由光电倍增管检测。 由于零剂量样品的RPL信号或来自照射样品的辐射诱导信号的耗尽,观察到在实验中使用的平均激光功率的限制。 短(1 s),低频(1 kHz)激光刺激使得这种效果可忽略不计,同时提供足够的敏感性,以使环境剂量的测量值类似于100μg。

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