Performance of a large aperture GEM-like gating device for the International Linear Collider

T. Ogawa
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Abstract

One of the potential problems of a Micro-Pattern Gaseous Detector (MPGD)-based Time Projection Chamber (TPC) is the Ion back Flow (IBF): ions generated through the avalanche amplification process flow back to the drift volume of the TPC and disarrange an electric field inside it. Consequently non-negligible degradation of azimuthal spatial resolution is caused due to this IBF. Meanwhile, it is necessary to collect primary ionized electrons to maintain intrinsic performance of the MPGDs. The MPGD based TPC is currently planned to be used as a central tracking detector of the International Large Detector (ILD), which is one of the detector concepts for the future International Linear Collider (ILC) project, and which requires fine azimuthal spatial resolution of less than $100~\mu \mathrm {m}$ over the drift length of the TPC to attain high momentum resolution. Because of a unique beam structure of the ILC, the IBF is a critical issue for the realization of the ILD-TPC. Not only to suppress the ion back-flow to the drift volume, but also to allow the primary electrons pass through, a large aperture GEM-like gating device has been developed. Several bench tests for confirming the performance of the gating device have been conducted, besides that, beam test with the full detector module equipped with the gating device was carried out to verify the resolution that the full module can provide. As a result, it turned out that the developed gating device fulfills requirements for maintaining the performance of the MPGD based TPC, and it has sufficient performance for the central tracker of the ILD at the ILC.
国际直线对撞机大孔径类gem门控装置的性能
基于微图气体探测器(MPGD)的时间投影室(TPC)的潜在问题之一是离子回流(IBF):雪崩放大过程中产生的离子回流到TPC的漂移体中,扰乱了TPC内部的电场。因此,由于这种IBF导致了方位角空间分辨率的不可忽略的退化。同时,有必要收集一次电离电子以保持MPGDs的固有性能。基于MPGD的TPC目前计划用作国际大型探测器(ILD)的中心跟踪探测器,这是未来国际线性对撞机(ILC)项目的探测器概念之一,需要在TPC的漂移长度上小于100~\mu \ maththrm {m}$的精细方位角空间分辨率才能获得高动量分辨率。由于ILC独特的光束结构,IBF是实现ILD-TPC的关键问题。为了抑制离子回流到漂移体中,同时允许初级电子通过,研制了一种大孔径的类gem门控装置。为了验证浇注装置的性能,进行了多次台架试验,并对配备浇注装置的全探测器模块进行了波束试验,验证了全模块所能提供的分辨率。结果表明,所开发的门控装置满足了维持基于MPGD的TPC性能的要求,并且具有足够的性能用于ILC的ILD中心跟踪器。
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