碲化镉锌化合物半导体探测器对伽玛光子响应的效率计算:微剂量模拟研究

Q3 Health Professions
Golnaz Barzgarnezhad, A. E. Torshabi
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引用次数: 0

摘要

碲化镉锌作为一种化合物半导体探测器,近年来在许多领域得到了广泛的应用。目前的研究是对该探测器对光子光束的性能进行全面的研究。此外,通过实现相同的策略,与使用蒙特卡罗码的其他常见检测器进行了比较研究。材料和方法:在FLUKA代码模拟过程中,将若干光子视为初级粒子。考虑到所有可能的碰撞和产生的二次粒子,在微剂量学尺度上对每个入射光子进行独特的跟踪是有吸引力的。在目前的研究中,三维碰撞定位的坐标是在探测器敏感体积上实现的。此外,能量沉积在每一个独特的碰撞和通过所有的相互作用,总的考虑。此外,对光子与探测器体积相互作用的物理概念进行了数值评估。此外,还考虑了在探测器两侧作为电极的金箔的影响。结果:得到的结果显示了光子与CZT相互作用中光电散射和康普顿散射的背景,包括相互作用的次数、沉积能量和三维碰撞坐标,而后者是一个新的成果。结论:所获得的结果表明,该检测器可以通过改变材料含量和检测器尺寸来提高其性能,以达到最佳效率。此外,对比结果表明,金电极覆盖的CZT的效率优于其他常见的半导体探测器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response of Cadmium Zinc Telluride Compound Semi-Conductor Detector against Gamma Photons by Efficiency Calculation: A Microdosimetry Simulation Study
Introduction: Cadmium zinc telluride has recently been used as a compound semiconductor detector in a wide range of fields. The current study is a comprehensive investigation of the performance of this detector against the photon beam. Moreover, a comparative study was carried out with other common detectors using the Mote Carlo code by the implementation of the same strategy. Material and Methods: During the simulation by FLUKA code, a number of photons were regarded as primary particles. It is attractive to trace each incident photon uniquely considering all possible collisions and produced secondary particles at the microdosimetry scale. In the current study, the coordinate of three-dimensional collisions location was realized at detector sensitive volume. Moreover, energy deposition was considered at each unique collision and through all interactions, totally. In addition, the physical concepts of photon interaction with detector volume were assessed, numerically. Furthermore, the effect of gold foils implemented as electrode at both sides of the detector was taken into account. Results: The obtained results indicated the context of photoelectric and Compton scattering in photon interactions with CZT, including the number of interactions, the deposited energy, and three-dimensional collision coordinate, while the latter case is proposed as a new achievement. Conclusion: As evidenced by the obtained results, the performance of this detector can be improved by changing material fraction and detector dimension to achieve optimum efficiency. In addition, the comparative results demonstrated that the efficiency of CZT covered by gold electrodes is superior to other common available semi-conductor detectors.
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来源期刊
Iranian Journal of Medical Physics
Iranian Journal of Medical Physics Health Professions-Radiological and Ultrasound Technology
CiteScore
1.00
自引率
0.00%
发文量
0
审稿时长
8 weeks
期刊介绍: Iranian Journal of Medical Physics (IJMP) is the official scientific bimonthly publication of the Iranian Association of Medical Physicists. IJMP is an international and multidisciplinary journal, peer review, free of charge publication and open access. This journal devoted to publish Original Papers, Review Articles, Short Communications, Technical Notes, Editorial and Letters to the Editor in the field of “Medical Physics” involving both basic and clinical research. Submissions of manuscript from all countries are welcome and will be reviewed by at least two expert reviewers.
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