首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Combination of two Gas Electron Multipliers and a Micromegas as gain elements for a time projection chamber
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Combination of two Gas Electron Multipliers and a Micromegas as gain elements for a time projection chamber

机译:将两个气体电子倍增器和一个微米作为时间投影室的增益元件的组合

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摘要

We measured the properties of a novel combination of two Gas Electron Multipliers with a Micromegas for use as amplification devices in high-rate gaseous time projection chambers. The goal of this design is to minimize the buildup of space charge in the drift volume of such detectors in order to eliminate the standard gating grid and its resultant dead time, while preserving good tracking and particle identification performance. To characterize this micro-pattern gas detector configuration, we measured the positive ion back-flow and energy resolution at various element gains and electric fields, using a variety of gases, and additionally studied crosstalk effects and discharge rates. At a gain of 2000, this configuration achieves an ion back-flow below 0.4% and an energy resolution better than σ/E = 12% for ~(55)Fe X-rays.
机译:我们测量了两个气体电子倍增器与Micromegas的新颖组合的特性,该组合被用作高速率气体时间投影室中的放大设备。该设计的目的是在这种探测器的漂移体积中最小化空间电荷的积累,以消除标准的选通栅格及其所导致的停滞时间,同时保持良好的跟踪和粒子识别性能。为了表征这种微模式气体检测器的配置,我们使用多种气体在各种元素增益和电场下测量了正离子回流和能量分辨率,还研究了串扰效应和放电速率。增益为2000时,对于〜(55)Fe X射线,此配置可实现低于0.4%的离子回流,并且能量分辨率优于σ/ E = 12%。

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