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The Drift Chamber detector of the FOOT experiment: Performance analysis and external calibration

机译:脚踏实验的漂移室检测器:性能分析和外部校准

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摘要

The study that we present is part of the preparation work for the setup of the FOOT (Fragmentation Of Target) experiment whose main goal is the measurement of the double differential cross sections of fragments produced in nuclear interactions of particles with energies relevant for particle therapy. The present work is focused on the characterization of the gas-filled drift chamber detector composed of 36 sensitive cells, distributed over two perpendicular views. Each view consists of six consecutive and staggered layers with three cells per layer. We investigated the detector efficiency and we performed an external calibration of the space-time relations at the level of single cells. This information was then used to evaluate the drift chamber resolution. An external tracking system realized with microstrip silicon detectors was adopted to have a track measurement independent on the drift chamber. The characterization was performed with a proton beam at the energies of 228 and 80 MeV. The overall hit detection efficiency of the drift chamber has been found to be 0.929 ± 0.008, independent on the proton beam energy. The spatial resolution in the central part of the cell is about 150 ± 10 μm and 300 ± 10 μm and the corresponding detector angular resolution has been measured to be 1.62 ± 0.16 mrad and 2.1 ± 0.4 mrad for the higher and lower beam energies, respectively. In addition, the best value on the intrinsic drift chamber resolution has been evaluated to be in the range 60 - 100 μm. In the framework of the FOOT experiment, the drift chamber will be adopted in the pre-target region, and will be exploited to measure the projectile direction and position, as well as for the identification of pre-target fragmentation events.
机译:我们存在的研究是用于设置脚(靶标的碎片)实验的制备工作的一部分,其主要目标是测量颗粒核相互作用的碎片的双差分横截面,其具有颗粒治疗的能量。本作本作的重点是由36个敏感细胞组成的燃气漂移室检测器的表征,分布在两个垂直视图上。每个视图由六个连续和交错的层组成,每层具有三个细胞。我们调查了探测器效率,我们在单个细胞水平下进行了时空关系的外部校准。然后使用该信息来评估漂移室分辨率。采用与微带硅探测器实现的外部跟踪系统,在漂移室上独立于轨道测量。在228和80meV的能量下用质子束进行表征。漂移室的总体击中检测效率已被发现为0.929±0.008,独立于质子束能量。电池中心部分中的空间分辨率为约150±10μm,300±10μm,并且相应的检测器角度分辨率分别测量为1.62±0.16mrad和2.1±0.4mrad,分别用于更高和下部光束能量。另外,已经评估了内在漂移室分辨率的最佳值在60-100μm的范围内。在脚踏实验的框架中,将采用漂移室在预先目标区域中采用,并且将被利用以测量射弹方向和位置,以及识别预先靶向碎片事件。

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    Istituto Nazionale di Fisica Nucleare (INFN) Section of Milano Mtlano Italy University of Milano Department of Physics Milano Italy;

    Istituto Nazionale di Fisica Nucleare (INFN) Section of Perugia Perugia Italy University of Perugia Department of Physics and Geology Perugia Italy;

    Trento Institute for Fundamental Physics and Applications Istituto Nazionale di Fisica Nucleare (TIFPA-INFN) Trento Italy University of Trento Department of Physics Trento Italy;

    Istituto Nazionale di Ftsica Nucleare (INFN) Section of Napoli Napoli Italy University of Napoli Department of Physics 'E. Pancini' Napoli Italy National University of Science and Technology MISIS RUS-119049 Moscow Russia Lebedev Physical Institute of the Russian Academy of Sciences RUS-119991 Moscow Russia;

    Istituto Nazionale di Fisica Nucleare (INFN) Section of Perugia Perugia Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Drift chamber; Silicon microstrip detector; Nuclear physics;

    机译:漂移室;硅微带探测器;核物理学;

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