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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Development of a personal dosimetry system based on optically stimulated luminescence of alpha-Al2O3:C for mixed radiation fields.
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Development of a personal dosimetry system based on optically stimulated luminescence of alpha-Al2O3:C for mixed radiation fields.

机译:基于光学激发的α-Al2O3:C的混合辐射场的个人剂量测定系统的开发。

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摘要

To develop a personal optically stimulated luminescence (OSL) dosimetry system for mixed radiation fields using alpha-Al2O3:C, a discriminating badge filter system was designed by taking advantage of its optically stimulable properties and energy dependencies. This was done by designing a multi-element badge system for powder layered alpha-Al2O3:C material and an optical reader system based on high-intensity blue light-emitting diode (LED). The design of the multielement OSL dosimeter badge system developed allows the measurement of a personal dose equivalent value Hp(d) in mixed radiation fields of beta and gamma. Dosimetric properties of the personal OSL dosimeter badge system investigated here were the dose response, energy response and multi-readability. Based on the computational simulations and experiments of the proposed dosimeter design, it was demonstrated that a multi-element dosimeter system with an OSL technology based on alpha-Al2O3:C is suitable to obtain personal dose equivalent information in mixed radiation fields.
机译:为了开发使用α-Al2O3:C的用于混合辐射场的个人光学激发发光(OSL)剂量测定系统,通过利用其光学可激发特性和能量依赖性设计了区分徽章过滤器系统。这是通过设计用于粉末状α-Al2O3:C材料的多元素徽章系统和基于高强度蓝色发光二极管(LED)的光学阅读器系统来完成的。开发的多元素OSL剂量计徽章系统的设计允许在β和γ混合辐射场中测量个人剂量当量值Hp(d)。本文研究的个人OSL剂量计徽章系统的剂量学特性是剂量响应,能量响应和多重可读性。基于所提出的剂量计设计的计算仿真和实验,证明了采用基于α-Al2O3:C的OSL技术的多元素剂量计系统适合在混合辐射场中获取个人剂量当量信息。

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