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Radiation hardness of cadmium telluride solar cells in proton therapy beam mode

机译:质子治疗束模式下碲化镉太阳能电池的辐射硬度

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摘要

We evaluated the durability of cadmium telluride (CdTe) solar cells upon proton beam irradiation as well as the possibility of achieving a dosimeter usable in proton beam therapy by applying 100 MeV of pencil beam scanning (PBS) irradiation. Specifically, a 100 MeV proton PBS beam was applied at irradiation doses of 0, 1012, 1013, 1014, and 1015 cm-2. According to the results, the remaining factors (defined as the ratio of the degraded value to the initial value) of open-circuit voltage (Voc), short-circuit current (Jsc), fill-factor (FF), and efficiency (ƞ) which are solar cell performance parameters, were approximately 89%, 44%, 69%, and 30%, respectively, compared to those of the reference cell (without irradiation) at the highest dose of 1×1015 cm-2. In particular, the conversion efficiency, which is the main factor, was approximately 70% of that of the reference cell even at a high fluence of 1×1014 cm-2. In addition, we observed the projected range of the hydrogen atoms based on the PBS beam energy using the Tool for Particle Simulation software and assessed the amount of fluence accumulated in a CdTe cell. As the energy increased, the fluence accumulated inside the cell tended to decrease owing to the characteristics of the Bragg peak of the proton. Thus, the radiation damage to the cell induced by the proton beam was reduced. The results of this study are expected to provide valuable reference information for research on dosimetry sensors composed of thin-film solar cells, serving as the basis for future application in proton beam therapy with CdTe solar cells.
机译:我们评估了质子束照射后碲化镉(CdTe)太阳能电池的耐久性,以及通过施加100 MeV铅笔束扫描(PBS)照射获得可用于质子束治疗的剂量计的可能性。具体地,以0、10 12 ,10 13 ,10 14 和10 15 cm -2 。根据结果​​,剩下的开路电压(Voc),短路电流(Jsc),填充因数(FF)和效率(ƞ)的系数(定义为退化值与初始值的比率) )作为太阳能电池的性能参数,与最高剂量为1×10 15 cm -2 。尤其是,即使在1×10 14 cm -2 的高通量下,作为主要因素的转换效率仍约为参考电池的70%。 。此外,我们使用“粒子模拟工具”软件,根据PBS束能量观察了氢原子的预测范围,并评估了CdTe电池中累积的能量密度。随着能量的增加,由于质子的布拉格峰的特性,积累在细胞内的能量密度趋于降低。因此,减少了质子束对细胞的辐射损伤。这项研究的结果有望为由薄膜太阳能电池组成的剂量传感器的研究提供有价值的参考信息,为将来在CdTe太阳能电池质子束治疗中的应用奠定基础。

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