陶瓷碘化汞半导体粒子计数器

M. Schieber, A. Zuck, M. Braiman, L. Melekhov, J. Nissenbaum, R. Turchett, W. Duliński, D. Husson, J. Riester
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引用次数: 6

摘要

用极厚的碘化汞(HgI/sub 2/)薄膜(100-600 /spl μ m)制备了辐射探测器。这些装置的功能是核粒子计数器,而不是光谱仪,它们具有单连续电触点、线性微带和方形像素触点。“陶瓷”一词是用来区分探测器和单晶的,而单晶通常是用来研究这种应用的。这些探测器已经在欧洲核子研究中心用不同种类的伽玛和β源以及100 GeV μ子的高能束进行了测试。所提出的结果表明,这种材料在要求位置敏感、耐辐射、室温操作辐射探测器的应用中具有潜力,在这些应用中,位置分辨率而不是光谱分辨率是必不可少的,因为它可以在高能物理、核医学和天体物理学的一些特定应用中找到。由于低成本和多结晶性,探测器可以潜在地制造成任何尺寸和形状,使用标准的陶瓷技术成型设备,这是一个有吸引力的特点,需要低成本和大面积应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ceramic mercuric iodide semiconductor particle counters
Radiation detectors have been fabricated from very thick films (100-600 /spl mu/m) of mercuric iodide (HgI/sub 2/). These devices, which function as nuclear particle counters and not as spectrometers, have been prepared with single continuous electrical contacts, linear microstrips and square pixel contacts. The word ceramic is used to distinguish the detectors from single crystals which are usually studied for this application. The detectors have been tested with different kinds of gamma and beta sources as well as in a high energy beam of 100 GeV muons at CERN. The presented results show the potential of this material for applications demanding position sensitive, radiation resistant, room-temperature operating radiation detectors, where position rather than spectroscopic resolution is essential, as it can be found in some specific applications in high energy physics, nuclear medicine and astrophysics. Because of the low cost and of the polycrystallinity, detectors can be potentially fabricated in any size and shape, using standard ceramic technology shaping equipment, which is an attractive feature where low cost and large area applications are needed.
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