Zou Mengnan, Bohon Jen, Smedley John, Distel James, Schmitt Kyle, Zhu Ren-Yuan, Zhang Liyuan, Muller Erik M
Materials Science and Chemical Engineering, Stony Brook University, Stony Brook, New York 11794, USA.
Accelerator Development Program Office, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
AIP Adv. 2020 Feb 3;10(2):025004. doi: 10.1063/1.5130768. eCollection 2020 Feb.
Diamond, a highly radiation-resistant material, is considered a nearly ideal material for radiation detection, particularly in high-energy physics. In this study, radiation damage from high-energy proton beams was induced in diamond crystals to determine exposure lifetime in detectors made from this material; the effects were investigated using non-destructive x-ray techniques and through the FLUKA simulation package. Two diamond detectors were irradiated by an 800 MeV proton beam at different fluence rates, and the real-time current response was recorded to observe degradation in the signal over time. It was determined that the proton fluence had a significant effect on the device degradation. The detector performance from the irradiated detectors was characterized using x-ray beam-induced current measurements, and the mechanism of proton radiation damage to diamond sensors, especially the radiation effects on carrier transport, was studied. The vacancies generated from proton irradiation were considered the major source of detector degradation by trapping holes and inducing an internal electric field. Simulation results from the FLUKA package revealed an uneven distribution of the radiation-induced vacancies along the beam path, and the corresponding detector signals calculated from the simulation results displayed a good match to the experimental results.
钻石是一种高度抗辐射的材料,被认为是用于辐射探测的近乎理想的材料,尤其是在高能物理领域。在本研究中,在金刚石晶体中诱导产生高能质子束的辐射损伤,以确定由这种材料制成的探测器的暴露寿命;使用无损X射线技术并通过FLUKA模拟软件包研究其影响。两个金刚石探测器以不同的注量率被800 MeV质子束辐照,并记录实时电流响应以观察信号随时间的衰减。结果表明,质子注量对器件退化有显著影响。使用X射线束诱导电流测量对辐照探测器的性能进行了表征,并研究了质子对金刚石传感器的辐射损伤机制,特别是对载流子输运的辐射效应。质子辐照产生的空位被认为是探测器退化的主要来源,它会俘获空穴并产生内电场。FLUKA软件包的模拟结果显示,辐射诱导的空位沿束流路径分布不均匀,从模拟结果计算出的相应探测器信号与实验结果显示出良好的匹配。