由挤压闪烁带和波长位移光纤组成的计数器的长期稳定性研究

IF 0.4 4区 工程技术 Q4 ENGINEERING, MULTIDISCIPLINARY
V. N. Evdokimov
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引用次数: 0

摘要

摘要 研究了由挤压闪烁条和波长转换纤维组成的计数器的长期稳定性。在开始批量生产计数器之前,对闪烁体和移波纤维进行了老化研究。研究中使用了更高的老化速度和温度,然后作为一项有趣的研发工作继续进行。在最初的 5-6 年中,光产率每年下降 3%。随后,陈化速度减慢,20 年后几乎停止,降幅为 26%。在暂停 2.5 年后,又对初步老化的样品进行了研究;结果表明,在 20°C 温度条件下,这些闪烁体的老化率每年低于 0.5%。通过直接测量和使用快速老化技术得出的 4.5 年结果非常吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Long-Term Stability Study of Counters Consisting of Extruded-Scintillator Strips and Wavelength-Shifting Fibers

A Long-Term Stability Study of Counters Consisting of Extruded-Scintillator Strips and Wavelength-Shifting Fibers

A Long-Term Stability Study of Counters Consisting of Extruded-Scintillator Strips and Wavelength-Shifting Fibers

The long-term stability of counters consisting of extruded-scintillator strips and wavelength-shifting fibers was studied. The aging study was carried out for scintillators and wavelength-shifting fibers before starting the mass production of counters. Aging at a higher rate and higher temperatures was used in the study, which was then continued as an interesting R&D work. The decrease in the light yield was at a level of 3% per year during an initial 5–6 years. The aging then proceeds slower and nearly ceases after a 26% decrease over 20 years. The study of preliminarily aged samples was repeated after a 2.5-year pause; it showed that the aging rate for these scintillators was less than 0.5% per year at 20°C. The results obtained over 4.5 years by direct measurements and by using a faster-aging technology were in good agreement.

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来源期刊
Instruments and Experimental Techniques
Instruments and Experimental Techniques 工程技术-工程:综合
CiteScore
1.20
自引率
33.30%
发文量
113
审稿时长
4-8 weeks
期刊介绍: Instruments and Experimental Techniques is an international peer reviewed journal that publishes reviews describing advanced methods for physical measurements and techniques and original articles that present techniques for physical measurements, principles of operation, design, methods of application, and analysis of the operation of physical instruments used in all fields of experimental physics and when conducting measurements using physical methods and instruments in astronomy, natural sciences, chemistry, biology, medicine, and ecology.
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