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Tracking performance of GasPixel detectors in test beam studies

机译:GasPixel检测器在测试束研究中的跟踪性能

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摘要

A combination of a pixel chip and a gas chamber (GasPixel detectors) opens new opportunities for particle detectors. GasPixel detectors consist of an electron drift volume, an amplification gap and an anode plane based on a semiconductor chip. This technology promises large benefits in high-energy charged-particle tracking. It allows reconstruction of a 3D image of a particle track segment in a single detector layer with high accuracy. Several prototypes of GasPixel detectors based on micromegas technology with different gas mixtures and drift gaps were studied in a test beam. A spatial resolution of 8 μm and angular accuracy of about 0.2° in a chip plane were obtained. A dedicated Monte Carlo simulation of GasPixel detectors shows good agreement with experimental data.
机译:像素芯片和气体室(GasPixel检测器)的组合为粒子检测器提供了新的机会。 GasPixel检测器由电子漂移体积,放大间隙和基于半导体芯片的阳极平面组成。这项技术有望在高能带电粒子跟踪中带来巨大的好处。它允许在单个检测器层中以高精度重建粒子轨迹段的3D图像。在测试光束中研究了基于micromegas技术的GasPixel检测器的几个原型,这些原型具有不同的气体混合物和漂移间隙。在芯片平面中获得了8μm的空间分辨率和约0.2°的角精度。 GasPixel探测器的专用蒙特卡洛模拟显示与实验数据吻合良好。

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