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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Time-resolved dose evaluation in an X- and gamma-ray irradiated silver-activated glass detector for three-dimensional imaging applications
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Time-resolved dose evaluation in an X- and gamma-ray irradiated silver-activated glass detector for three-dimensional imaging applications

机译:在X射线和伽马射线辐照的银活化玻璃探测器中用于三维成像应用的时间分辨剂量评估

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Ag-activated phosphate glass based on the radiophotoluminescence (RPL) phenomenon has been used as the most commonly known RPL material and as an accumulated-type passive detector. In this work, the transient-state evaluation of the dose distributions achieved by X- and gamma-ray irradiations within the Ag-activated phosphate glass was performed using a time-resolved technique for the first time. Specifically, the blue RPL intensity ascribed to the electron-trapped Ag~0 centres as a function of the depth at the vicinity of the surface was investigated for different types of radiation and a wide range of energies. In addition, the dose distributions at each layer within the glass confirmed by the time-resolved measurement were compared with those reconstructed by a disk-type transparent glass detector based on the blue RPL with a diameter of 100 mm.
机译:基于放射光致发光(RPL)现象的银活化磷酸盐玻璃已被用作最常见的RPL材料和累积型无源探测器。在这项工作中,首次使用时间分辨技术对在Ag活化的磷酸盐玻璃内通过X射线和γ射线辐照获得的剂量分布进行了瞬态评估。具体地,对于不同类型的辐射和宽范围的能量,研究了归因于电子俘获的Ag〜0中心的蓝色RPL强度与表面附近深度的关系。另外,将通过时间分辨测量确认的玻璃内各层的剂量分布与通过盘型透明玻璃检测器基于直径为100mm的蓝色RPL重建的剂量分布进行比较。

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