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Numerical Study of Electrostatic Field Distortion on LPTPC End-Plates based on Bulk Micromegas Modules

机译:基于散装Micromegas模块的LPTPC端板上静电场失真的数值研究

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摘要

The R&D activities for the linear collider TPC (LC-TPC) are currently working on the adoption of the micro pattern devices for the gaseous amplification stage. Several beam tests have been carried out at DESY with a 5 GeV electron beam in a 1 T superconducting magnet. We worked on a large prototype TPC with an end-plate that was built, for the first time, using seven resistive bulk Micromegas modules. During experiments, reduced signal sensitivity was observed at the boundary of these modules. Electrostatic field distortion near the module boundaries was considered to be the possible major reason behind these observations. In the present work, we will explore this hypothesis through numerical simulation. Our aim has been to understand the origin of distortions observed close to the edges of the test beam modules and to explore the possibility of using the Garfield simulation framework for investigating a phenomenon as complex as distortion.
机译:线性撞机TPC(LC-TPC)的研发活动目前正在研究用于气态放大阶段的微图案装置。在1T超导磁体中的5个GEV电子束在谷物中进行了几个光束测试。我们在一个大型原型TPC上使用七个电阻散装Micromegas模块制造的端板。在实验期间,在这些模块的边界处观察到降低的信号灵敏度。模块边界附近的静电场畸变被认为是这些观察结果背后的可能的主要原因。在目前的工作中,我们将通过数值模拟探讨这一假设。我们的目标是了解靠近测试梁模块的边缘观察到的扭曲的起源,并探讨使用GAR菲尔德模拟框架来调查作为变形的现象的可能性。

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