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The cylindrical GEM detector for the KLOE-2 Inner Tracker

机译:用于KLOE-2内部跟踪器的圆柱形GEM检测器

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摘要

Part of the upgrade of the KLOE detector at the DA\Phi NE \Phi -factory consists of the insertion of a tracking device around the interaction region, composed of four tracking layers with radii from 130 mm to 205 mm and an active length of 700 mm. Each layer was realized as a cylindrical triple-GEM (CGEM) kapton-based detector, a solution that allows us to keep the total material budget below 2% of X_{0}, of utmost importance to limit the multiple scattering of low-momentum tracks at KLOE-2, and to minimize dead spaces. The peculiar readout pattern with XV strips provides a spatial resolution of about 200 \mu m on both views, while a dedicated readout system has been developed by the KLOE-2 collaboration. It is composed of a digital readout front-end card based on the GASTONE ASIC and a General Interface Board with a configurable FPGA architecture and Gigabit Ethernet. The construction of the four CGEM layers has been completed and the detectors have been tested with a beta source and cosmic-ray muons. The insertion inside the KLOE apparatus was performed in July 2013. The construction procedure and the results of the validation tests will be reported.
机译:DA \ Phi NE \ Phi工厂的KLOE检测器升级的一部分包括在交互区域周围插入跟踪设备,该跟踪设备由半径为130 mm至205 mm,有效长度为700的四个跟踪层组成毫米每层都实现为圆柱形三重GEM(CGEM)聚酰亚胺基探测器,该解决方案使我们能够将总材料预算保持在X_ {0}的2%以下,这对于限制低动量的多次散射至关重要在KLOE-2上进行跟踪,以最小化死角。带有XV条纹的独特读取模式在两个视图上均提供约200μm的空间分辨率,而KLOE-2合作开发了专用的读取系统。它由基于GASTONE ASIC的数字读出前端卡和具有可配置FPGA架构和千兆位以太网的通用接口板组成。四个CGEM层的构造已经完成,并且探测器已经通过β源和宇宙射线μ子进行了测试。 2013年7月在KLOE设备内部进行了插入。将报告施工过程和验证测试结果。

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