首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Development of μ-RWELL detectors for the upgrade of the tracking system of CMD-3 detector
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Development of μ-RWELL detectors for the upgrade of the tracking system of CMD-3 detector

机译:开发μ-RWELT探测器,用于升级CMD-3检测器的跟踪系统

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An upgrade of tracking system of Cryogenic Magnetic Detector (CMD-3) is proposed using microresistive WELL technology. CMD-3 is a general purpose detector operating at the VEPP-2000 collider at Budker Institute of Nuclear Physics and intended for studies of light vector mesons in the energy range between 0.3 GeV and 2 GeV. The new subsystem consists of double-layer cylindrical detector and the end-cap discs. Two prototypes, microRWELL and micro-RWELL-GEM were built and tested. Gas amplification of micro-RWELL detector was measured with several gas mixtures and maximum gain between 20000 and 30000 was observed. However, maximum gain is fluctuating from measurement to measurement by a factor of 2 and thus a safety margin of 2-3 is needed to provide reliable operation of the device. In order to increase the signal GEM was added to micro-RWELL, new prototype was tested with the same gas mixtures and gains above 10(5) have been demonstrated. Time resolution achieved for both prototypes are 7 ns for micro-RWELL and 4 ns for micro-RWELL-GEM.
机译:使用微量井技术提出了一种升级低温磁检测器(CMD-3)的跟踪系统。 CMD-3是在Budker核物理研究所Vepp-2000撞机中运行的通用探测器,旨在为0.3 GEV和2 GEV之间的能量范围内的光矢量介子进行研究。新子系统包括双层圆柱探测器和终端盖盘。建造并测试了两个原型,Microrwell和Micro-Rwell-Gem。用几种气体混合物测量微rwell检测器的气体扩增,并且观察到20000和30000之间的最大增益。然而,最大增益从测量到测量的最大增益将2倍,因此需要2-3的安全余量来提供设备的可靠操作。为了增加将信号宝石添加到微rwell中,用相同的气体混合物测试新的原型,并证明了10(5)以上的增益。对于两种原型实现的时间分辨率为7 ns,用于微rwell和4 ns用于微rwell-gem。

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