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温度暴露后闪烁探测器中光学耦合材料的性能

Performance of Optical Coupling Materials in Scintillation Detectors Post Temperature Exposure.

作者信息

Romanchek Gregory, Wang Yuli, Marupudi Harsha, Abbaszadeh Shiva

机构信息

Nuclear, Plasma and Radiological Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

Electrical and Computer Engineering, University of California, Santa Cruz, CA 95064, USA.

出版信息

Sensors (Basel). 2020 Oct 27;20(21):6092. doi: 10.3390/s20216092.

Abstract

In this paper, the room-temperature performance of different optical coupling materials post temperature exposure was tested. The tested couplers included OC431A-LVP, OG0010 optical grease, BLUESIL V-788, and SAINT-GOBAIN BC-630. This was done by subjecting the whole detector with newly applied optical coupling materials to a 2-h temperature exposure-ranging from -20 to 50 °C and then by letting it return to room temperature before collecting a spectrum from a Cs-137 source. The energy resolution at 662 keV was computed as the metric for evaluating the performance. Three trials were run at each coupler-temperature combination. Our results reveal that the performance of all coupling agents do indeed change with temperature after the 2-h exposure. Over all the tested temperature trials, the energy resolution ranged from 11.4 to 14.3% for OC431A-LVP; 10.2 to 14.6% for OG0010; 10 to 13.4% for BLUESIL V-788; and 9.8 to 13.3% for SAINT-GOBAIN BC-630. OC431A-LVP had the lowest variance over the full range, while BC-630 was the most constant for temperatures above 20 °C. Ultraviolet-visible (UV-Vis) spectra experiments were also performed on isolated optical coupling materials to measure the light absorption coefficient. The results show that the temperature-induced variance in light absorption coefficient of each optical coupling materials is one of the reasons for the variance in energy resolution performance. Our findings suggest the need for further investigation into this effect and the recommendation that optical coupling materials need to be selected for the task at hand with greater scrutiny.

摘要

在本文中,对不同光学耦合材料经温度暴露后的室温性能进行了测试。测试的耦合剂包括OC431A-LVP、OG0010光学油脂、BLUESIL V-788和圣戈班BC-630。具体做法是,将新涂抹了光学耦合材料的整个探测器置于-20至50°C的温度下暴露2小时,然后使其恢复到室温,再从Cs-137源收集光谱。计算662 keV处的能量分辨率作为评估性能的指标。在每个耦合剂-温度组合下进行了三次试验。我们的结果表明,在2小时暴露后,所有耦合剂的性能确实会随温度变化。在所有测试的温度试验中,OC431A-LVP的能量分辨率范围为11.4%至14.3%;OG0010为10.2%至14.6%;BLUESIL V-788为10%至13.4%;圣戈班BC-630为9.8%至13.3%。OC431A-LVP在整个范围内的方差最小,而BC-630在20°C以上的温度下最为稳定。还对分离出的光学耦合材料进行了紫外-可见(UV-Vis)光谱实验,以测量光吸收系数。结果表明,每种光学耦合材料的光吸收系数随温度的变化是能量分辨率性能变化的原因之一。我们的研究结果表明需要对这种效应进行进一步研究,并建议在选择光学耦合材料时要更加仔细地考虑手头的任务。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd2e/7663502/f697c2389b15/sensors-20-06092-g001.jpg

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