充液氩气作为气泡室、量热计和闪烁探测器的测试装置的同时操作:展望和可能的应用

Gert G. Harigel
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引用次数: 1

摘要

讨论了采用氩气作为新型气泡室液体的物理动机。在欧洲核子研究中心的SPS和SC光束下,2.7 1氩探测器对电离粒子和气泡室模式下的激光束的跟踪灵敏度,通过收集电场中的自由电荷和记录电离粒子产生的闪烁光,将其用作量热计。讨论了混合性能同时使用时的各种干扰现象,以及对液体纯度的要求。此外,还研究了氮气和氩气/氮气混合物。简要概述了我们的技术在TeV加速器和作为顶点探测器的中微子实验中的应用。在BEBC成功测试的在线全息技术可以简化光学轨迹记录并提高超大探测器的分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous operation of a test apparatus filled with liquid argon as bubble chamber, calorimeter and scintillation detector: Outlook and possible applications

Physics motivations for the use of argon as a new bubble chamber liquid are discussed. Results, obtained from a 2.7 1 argon detector in SPS and SC beams at CERN, comprise its track sensitivity to ionizing particles and to a laser beam in the bubble chamber mode, its use as a calorimeter through the collection of free charges in an electric field and the recording of the scintillation light produced by ionizing particles. Various interference phenomena during the simultaneous use of the hybrid properties, as well as purity requirements on the liquid are discussed. Furthermore, nitrogen and argon/nitrogen mixtures were investigated. Applications of our technique for neutrino experiments at TeV accelerators and as vertex detectors are briefly outlined. In-line holography, successfully tested in BEBC, could simplify the optical track recording and improve the resolution in very large detectors.

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