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Study of spatial resolution of coordinate detectors based on Gas Electron Multipliers

机译:基于气体电子倍增器的坐标探测器空间分辨率研究

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Spatial resolution of GEM-based tracking detectors is determined in the simulation and measured in the experiments. The simulation includes GEANT4 implemented transport of high energy electrons with careful accounting of atomic relaxation processes including emission of fluorescent photons and Auger electrons and custom post-processing with accounting of diffusion, gas amplification fluctuations, distribution of signals on readout electrodes, electronics noise and particular algorithm of final coordinate calculation (center of gravity). The simulation demonstrates that the minimum of spatial resolution of about 10 μm can be achieved with a gas mixture of Ar - CO_2 (75-25 %) at a strips pitch from 250 μm to 300 μm. At a larger pitch the resolution quickly degrades reaching 80-100 μm at a pitch of 460-500 μm. Spatial resolution of low-material triple-GEM detectors for the DEUTERON facility at the VEPP-3 storage ring is measured at the extracted beam facility of the VEPP-4 M collider. One-coordinate resolution of the DEUTERON detector is measured with electron beam of 500 MeV, 1 GeV and 3.5 GeV energies. The determined value of spatial resolution varies in the range from approximately 35 urn to 50μm for orthogonal tracks in the experiments.
机译:基于GEM的跟踪探测器的空间分辨率在仿真中确定,并在实验中进行测量。该模拟包括GEANT4实现的高能电子的传输,仔细考虑了原子弛豫过程,包括荧光光子和俄歇电子的发射,以及定制的后处理,考虑了扩散,气体放大波动,信号在读数电极上的分布,电子噪声和特殊因素。最终坐标计算算法(重心)。该模拟表明,使用Ar-CO_2(75%-25%)的混合气体以250μm至300μm的条带间距可以实现约10μm的最小空间分辨率。在较大的间距下,分辨率迅速下降,在460-500μm的间距下达到80-100μm。用于VEPP-3存储环的DEUTERON设施的低材料三重GEM检测器的空间分辨率是在VEPP-4 M对撞机的提取光束设施处测量的。 DEUTERON检测器的一坐标分辨率是用500 MeV,1 GeV和3.5 GeV能量的电子束测量的。对于实验中的正交轨道,空间分辨率的确定值在大约35 um至50μm的范围内变化。

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