在切伦科夫环成像和其他应用的多步比例室中使用TMAE

G. Charpak, F. Sauli
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引用次数: 27

摘要

我们测试了一个20 × 20 cm2活性面积的多步比例腔,设想用于定位单真空紫外光子。该探测器具有成像大量切伦科夫环的能力,具有高密度的检测光电子,并使用阈值为5.4 eV的四(二甲胺)乙烯作为光电离蒸汽。转换间隙中的时间切片在很大程度上减少了给定时刻的多重性,并允许使用简单的定位方法。放大间隙的分离解决了单步探测器在高增益时遇到的光子反馈问题。我们还讨论了该腔在检测速度在电子漂移速度范围内的超重单极子中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of TMAE in a multistep proportional chamber for cherenkov ring imaging and other applications

We tested a multistep proportional chamber of 20 × 20 cm2 activ area, conceived to localize single vacuum ultraviolet photons. The detector has a capability of imaging large multiplicities of Cherenkov rings with a high density of detected photoelectrons and uses tetrakis(dimethylamine)ethylene, with a threshold of 5.4 eV, as the photoionizing vapour. Time slicing in a conversion gap reduces the multiplicity at a given instant of time by a large factor and permits the use of simple methods of localization. Separation of the amplifying gaps solves the problems of photon feedback encountered, at high gains, with single-step detectors. We also discuss an application of this chamber for the detection of superheavy monopoles if they have a speed in the range of the electron drift velocity.

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