论文标题
基于宝石的TPC读数(DESY模块)的最新性能研究
Recent Performance Studies of the GEM-based TPC Readout (DESY Module)
论文作者
论文摘要
对于计划的国际线性撞机(ILC)的国际大型探测器(ILD),时间投影室(TPC)被预见为主要跟踪探测器。为了达到所需的点分辨率,将在放大阶段使用微图案气态检测器(MPGD)。在DESY开发了使用三个气体电子乘数(GEM)进行气体扩增的读取模块,并在DESY II测试梁设施进行了测试。在测试光束设施中引入了读出模块和基础架构后,介绍了与单点和双重分辨率有关的三个模块的性能。接下来是使用特定的能量损失DE/DX和仿真研究对系统的粒子识别能力的结果,旨在研究和量化高粒度对DE/DX分辨率的影响。此外,描述了用于测试梁的新的和改进的TPC场笼和Lycoris大面积硅丝带望远镜。预见了Lycoris束望远镜,以提供粒子轨迹的精确参考,以验证用大型TPC原型测量的动量分辨率。为此,它在所谓的PCMAG(持续电流磁铁)内的测试梁设施中安装和测试。
For the International Large Detector (ILD) at the planned International Linear Collider (ILC) a Time Projection Chamber (TPC) is foreseen as the main tracking detector. To achieve the required point resolution, Micro-Pattern Gaseous Detectors (MPGD) will be used in the amplification stage. A readout module using a stack of three Gas Electron Multipliers (GEM) for gas amplification was developed at DESY and tested at the DESY II Test Beam Facility. After introducing the readout module and the infrastructure at the test beam facility, the performance related to single point and double-hit resolution of three of these modules is presented. This is followed by results on the particle identification capabilities of the system, using the specific energy loss dE/dx, and simulation studies, aimed to investigate and quantify the impact of high granularity on dE/dx resolution. In addition, a new and improved TPC field cage and the LYCORIS Large-Area Silicon-Strip Telescope for the test beam are described. The LYCORIS beam telescope is foreseen to provide a precise reference of the particle trajectory to validate the momentum resolution measured with a large TPC prototype. For this purpose, it is being installed and tested at the test beam facility within the so-called PCMAG (Persistent Current Magnet).