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A direct time measurement technique for the two-dimensional precision coordinate detectors based on thin-walled drift tubes

机译:基于薄壁漂移管的二维精密坐标检测仪的直接测量技术

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摘要

This article presents the results of a study of the longitudinal spatial resolution by means of the direct timing method (DTM) using 2 m long and 9.53 mm diameter straw tubes. The feasibility of achieving the spatial resolution (r.m.s.) better than 2 cm over full length of the straw is demonstrated. The spatial resolution changes little when measured by detecting gammas from a Fe-55 gamma ray source or minimum ionizing electrons from a Ru-106 source. The use of the same type of front end electronics (FEE) both for measuring the drift time of ionization electrons and propagation time of a signal along the anode wire allows one to construct a detector capable for measuring the two dimensional coordinates of charged particles.
机译:本文介绍了使用2 m长和9.53 mm直径的吸管通过直接定时法(DTM)研究纵向空间分辨率的结果。证明了在吸管全长上获得优于2 cm的空间分辨率(r.m.s.)的可行性。通过检测来自Fe-55伽马射线源的伽马或来自Ru-106源的最小电离电子来测量时,空间分辨率几乎不变。使用相同类型的前端电子设备(FEE)来测量电离电子的漂移时间和信号沿着阳极导线的传播时间,就可以构造一种能够测量带电粒子二维坐标的检测器。

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