首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Development of a stable and sensitive semiconductor detector by using a mixture of lead(II) iodide and lead monoxide for NDT radiation dose detection
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Development of a stable and sensitive semiconductor detector by using a mixture of lead(II) iodide and lead monoxide for NDT radiation dose detection

机译:通过使用铅(II)碘化物的混合物和用于NDT辐射剂量检测的混合物,通过使用铅(II)碘化物和总氧化铅的混合物进行稳定和敏感的半导体检测器

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摘要

Recently, high-energy radiation has been widely used in various industrial fields, including the medical industry, and increasing research efforts have been devoted to the development of radiation detectors to be used with high-energy radiation. In particular, nondestructive industrial applications use high-energy radiation for ships and multilayered objects for accurate inspection. Therefore, it is crucial to verify the accuracy of radiation dose measurements and evaluate the precision and reproducibility of the radiation output dose. Representative detectors currently used for detecting the dose in high-energy regions include Si diodes, diamond diodes, and ionization chambers. However, the process of preparing these detectors is complex in addition to the processes of conducting dosimetric measurements, analysis, and evaluation. Furthermore, the minimum size that can be prepared for a detector is limited. In the present study, the disadvantages of original detectors are compensated by the development of a detector made of a mixture of polycrystalline PbI2 and PbO powder, which are both excellent semiconducting materials suitable for detecting high-energy gamma rays and X-rays. The proposed detector shows characteristics of excellent reproducibility and stable signal detection in response to the changes in energy, and was analyzed for its applicability. Moreover, the detector was prepared through a simple process of particle-in-binder to gain control over the thickness and meet the specific value designated by the user. A mixture mass ratio with the highest reproducibility was determined through reproducibility testing with respect to changes in the photon energy. The proposed detector was evaluated for its detection response characteristics with respect to high-energy photon beam, in terms of dose-rate dependence, sensitivity, and linearity evaluation. In the reproducibility assessment, the detector made with 15 wt% PbO powder showed the best characteristics of 0.
机译:最近,高能量辐射已广泛应用于各种工业领域,包括医疗行业,并且越来越多的研究工作已经致力于开发与高能辐射使用的辐射探测器。特别是,非破坏性工业应用为船舶和多层物体使用高能辐射来精确检查。因此,验证辐射剂量测量的准确性并评估辐射输出剂量的精度和再现性是至关重要的。目前用于检测高能区域中的剂量的代表性探测器包括Si二极管,金刚石二极管和电离室。然而,除了进行剂量测量,分析和评估的过程之外,制备这些探测器的方法是复杂的。此外,可以为检测器准备的最小尺寸是有限的。在本研究中,原始探测器的缺点是通过开发由多晶PBI2和PbO粉末的混合物制成的检测器来补偿,它们都是适合于检测高能伽马射线和X射线的优异半导体材料。所提出的检测器显示出优异的再现性和稳定信号检测的特性,响应于能量的变化,并分析其适用性。此外,通过简单的脱脂件的简单方法制备检测器,以获得对厚度的控制并满足用户指定的特定值。通过相对于光子能量的变化的再现性测试,确定具有最高再现性的混合物质量比。就剂量率依赖性,灵敏度和线性评估而言,评估所提出的检测器的检测响应特性。在再现性评估中,用15wt%PbO粉制成的检测器显示出0的最佳特性。

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