The possibility for gamma and UV radiation detection based on electrical breakdown time delay measurement in krypton and xenon filled diodes

IF 0.9 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY
M. Pejović, E. Živanović, Čedomir Belić
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引用次数: 5

Abstract

The paper presents results of electrical breakdown time delay mean value t?d as a function of relaxation time ? (memory curve) for krypton and xenon-filled diodes at 270 Pa pressure. Memory curves were obtained for the cases without radiation as well as in the presence of gamma and UV radiation. It was shown that significant influence of UV radiation to t?d can be observed for ? ? 100 ms, as well as gamma radiation for ? ? 103 ms. Laue's distribution was also investigated for electrical breakdown time delay data sets td, obtained for ? ? 150 ms, without radiation as well as in the presence of gamma and UV radiation. It was shown that for all these data sets Laue's distribution stands, except for the case when krypton-filled tube was subjected to UV radiation. On the basis of the obtained results, the throughout analysis was performed with the aim to investigate possible application of these diodes as sensors of gamma and UV radiation.
基于电击穿时间延迟测量在氪和氙填充二极管的伽马和紫外线辐射检测的可能性
本文给出了电击穿延时平均值t?D作为松弛时间的函数?(记忆曲线)在270pa压力下的氪和氙填充二极管。在没有辐射的情况下,以及在伽马和紫外线辐射的情况下,获得了记忆曲线。结果表明,紫外线辐射对t?D可以被观察到?? 100毫秒,还有伽马射线?? 103 ms。Laue的分布也研究了电击穿时间延迟数据集td,得到?? 150毫秒,没有辐射,也没有伽马和紫外线辐射。结果表明,除了氪填充管受到紫外线辐射的情况外,对于所有这些数据集,劳埃分布都是成立的。在获得的结果的基础上,整个分析的目的是研究这些二极管作为伽马和紫外线辐射传感器的可能应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nuclear Technology & Radiation Protection
Nuclear Technology & Radiation Protection NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.00
自引率
41.70%
发文量
10
审稿时长
6-12 weeks
期刊介绍: Nuclear Technology & Radiation Protection is an international scientific journal covering the wide range of disciplines involved in nuclear science and technology as well as in the field of radiation protection. The journal is open for scientific papers, short papers, review articles, and technical papers dealing with nuclear power, research reactors, accelerators, nuclear materials, waste management, radiation measurements, and environmental problems. However, basic reactor physics and design, particle and radiation transport theory, and development of numerical methods and codes will also be important aspects of the editorial policy.
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