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Limits of a spatial resolution of the cascaded GEM based detectors

机译:级联宝石探测器的空间分辨率的限制

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Spatial resolution of tracking detectors based on GEM cascades is determined in the simulation and measured. The simulation includes GEANT4 implemented transport of high energy electrons with careful accounting for atomic relaxation processes including emission of fluorescent photons and Auger electrons and custom post-processing taking into account diffusion, gas amplification fluctuations, the distribution of signals over readout electrodes, electronics noise and particular algorithm of final coordinate calculation (centre-of-gravity algorithm). The simulation demonstrates that the minimum of the spatial resolution of about 10-20 μm can be achieved with a gas mixture of Ar-CO_2 (75 %-25 %) at a strip pitch in the range from 250 μm to 300 μm. At a larger pitch the resolution quickly degrades reaching 70-100 μm at a pitch of 450-500 μm. The reasons of such behavior are discussed and corresponding hypothesis is tested. Particularly, the effect of electron cloud modification due to a GEM operation is considered using the ANSYS and Garfield++ simulation programs. The detection efficiency and spatial resolution of low-material triple-GEM detectors for the DEUTERON facility at BINP are measured at the extracted beam facility of the VEPP-4M collider. One-coordinate resolution of two detectors for the DEUTERON facility is measured with a 2 GeV electron beam. The determined values of the detectors' spatial resolution is equal to 46.6 ± 0.1 μm and 38.5 ± 0.2 μm for orthogonal tracks in two detectors, respectively.
机译:在模拟中确定基于GEM级联反应的跟踪检测器的空间分辨率并测量。该模拟包括GEANT4实施的高能电子运输,并仔细考虑了原子放松过程,包括荧光光子和螺旋钻的排放以及考虑到扩散的定制后处理,气体扩增波动,信号的分布,读出电极,电子噪声和电子噪声和电子噪声和电子噪声和电子噪声和电子噪声和电子噪声和电源的分布最终坐标计算的特定算法(重心算法)。该模拟表明,在250μm至300μm的条范围内,在带状螺距上,可以使用AR-CO_2(75%-25%)的气体混合物(75%-25%)的气体混合物来实现大约10-20μm的空间分辨率。在较大的球场上,分辨率在450-500μm的螺距下迅速降解达到70-100μm。讨论了这种行为的原因,并测试了相应的假设。特别是,使用ANSYS和Garfield ++仿真程序考虑了由于GEM操作而导致的电子云修饰的效果。在BINP的Deuteron设施中,在VEPP-4M撞机的提取光束设施中测量了低体积三角检测器的检测效率和空间分辨率。用2 GEV电子束测量了Deuteron设施的两个检测器的单坐标分辨率。在两个检测器中,检测器空间分辨率的确定值分别等于46.6±0.1μm和38.5±0.2μm。

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