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A three-dimensional imaging detector based on nano-scale silver-related defects in X- and gamma-ray-irradiated glasses

机译:基于X射线和γ射线照射的玻璃中的纳米级银相关缺陷的三维成像检测器

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摘要

Ag-activated phosphate glass, which is the most commonly known radiophotoluminescent (RPL) material, has the capability to operate not only dosimeters but also two- and three-dimensional (2D and 3D) dose imaging detectors in the same host. This passive detector is based on radiationinduced, optically active nano-scale defects. In this work, the transient-state optical properties of the blue and orange RPL were investigated using a time-resolved spectrum technique for 137Cs and 60Co gamma-ray-irradiated Ag-activated phosphate glass. Specifically, the blue RPL intensity with a decay time of 5 ns as a function of the depth at the vicinity of the surface was systematically examined to clarify an accurate dose distribution within the glass. Moreover, a feasibility study into the use of an RPL Ag-activated phosphate glass detector for fluorescent nuclear track imaging was demonstrated using a confocal fluorescence image microscope for the first time. © 2016 The Japan Society of Applied Physics.
机译:Ag活化的磷酸盐玻璃是最常见的放射光(RPL)材料,不仅能够操作剂量计,而且还可以操作同一主机中的二维和三维(2D和3D)剂量成像检测器。该无源探测器基于辐射诱发的光学活性纳米级缺陷。在这项工作中,使用时间分辨光谱技术研究了137Cs和60Coγ射线辐照的Ag活化磷酸盐玻璃的蓝色和橙色RPL的瞬态光学特性。具体地,系统地检查了衰减时间为5 ns的蓝色RPL强度,该衰减时间是表面附近深度的函数,以澄清玻璃内的精确剂量分布。此外,首次使用共聚焦荧光图像显微镜证明了将RPL Ag活化的磷酸盐玻璃探测器用于荧光核径迹成像的可行性研究。 ©2016日本应用物理学会。

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