论文标题

用群集计数技术的粒子识别,用于思想漂移室

Particle identification with the cluster counting technique for the IDEA drift chamber

论文作者

Caputo, Claudio, Chiarello, Gianluigi, Corvaglia, Alessandro, Cuna, Federica, D'Anzi, Brunella, De Filippis, Nicola, Elmetenawee, Walaa, Gorini, Edoardo, Grancagnolo, Francesco, Greco, Matteo, Gribanov, Sergei, Johnson, Kurtis, Miccoli, Alessandro, Panareo, Marco, Popov, Alexander, Primavera, Margherita, Taliercio, Angela, Tassielli, Giovanni Francesco, Ventura, Andrea, Xin, Shuiting

论文摘要

IDEA(电子峰值加速器的创新探测器)是一种通用检测器概念,旨在研究来自非常大的圆形Leptonic Collider的宽能量范围的电子峰值碰撞。它的漂移室旨在通过利用群集计数技术的应用来提供有效的跟踪,高精度的动量测量和出色的粒子识别。为了研究群集计数技术在物理事件上的潜力,需要对电离簇产生进行仿真,因此我们开发了一种算法,该算法可以使用Geant4 Toolkit提供的能源存款信息,以快速,方便的方式繁殖,群集数量分布和集群大小分布。获得的结果证实,群集计数技术允许分辨率比传统的DE/DX方法好2倍。在2021年11月在CERN上对H8进行了梁测试,以验证模拟结果,以定义完全有效的群集计数的限制效应,并计算由电离轨道以固定$βγ$作为轨道角度的电离轨道释放的电子簇数量。在此问题中将简要描述仿真和梁测试结果。

IDEA (Innovative Detector for an Electron-positron Accelerator) is a general-purpose detector concept, designed to study electron-positron collisions in a wide energy range from a very large circular leptonic collider. Its drift chamber is designed to provide an efficient tracking, a high precision momentum measurement and an excellent particle identification by exploiting the application of the cluster counting technique. To investigate the potential of the cluster counting techniques on physics events, a simulation of the ionization clusters generation is needed, therefore we developed an algorithm which can use the energy deposit information provided by Geant4 toolkit to reproduce, in a fast and convenient way, the clusters number distribution and the cluster size distribution. The results obtained confirm that the cluster counting technique allows to reach a resolution 2 times better than the traditional dE/dx method. A beam test has been performed during November 2021 at CERN on the H8 to validate the simulations results, to define the limiting effects for a fully efficient cluster counting and to count the number of electron clusters released by an ionizing track at a fixed $βγ$ as a function of the track angle. The simulation and the beam test results will be described briefly in this issue.

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