论文标题

三轮检测器的时间性能高

Time performance of a triple-GEM detector at high rate

论文作者

Amoroso, A., Ferroli, R. Baldini, Balossino, I., Bertani, M., Bettoni, D., Bortone, A., Calcaterra, A., Cerioni, S., Cheng, W., Cibinetto, G., Ramusino, A. Cotta, Cossio, F., Rolo, M. Da Rocha, De Mori, F., Denig, A., Destefanis, M., Dong, J., Evangelisti, F., Farinelli, R., Fava, L., Felici, G., Garillon, B., Garzia, I., Gatta, M., Giraudo, G., Gramigna, S., Greco, M., Gülker, P., Guo, Y. P., Lauth, W., Lavezzi, L., Maggiora, M., Malaguti, R., Mangoni, A., Marcello, S., Melchiorri, M., Mezzadri, G., Pace, E., Pacetti, S., Patteri, P., Pellegrino, J., Redmer, C. F., Ripka, M., Rivetti, A., Rosner, C., Scodeggio, M., Sosio, S., Spataro, S.

论文摘要

气态探测器用于高能物理学作为跟踪器,或者更普遍地用作测量粒子位置的设备。因此,它们必须提供高空间分辨率,并且必须能够在强烈的辐射区域(即撞机机器的相互作用点)进行操作。其中,微型模式气态探测器(MPGD)是最新的边界,并允许克服已有检测器的许多局限性,例如辐射耐受性和速率能力。气体电子乘数(GEM)是一个MPGD,可利用减少的放大区域中强烈的电场以防止放电。几个放大阶段,例如在三轮车中,可以增加检测器的增益并降低放电概率。重建技术,例如电荷质心(CC)和微型投影室($ \ upmu $ tpc)用于执行位置测量。从文献中,三个游戏显示出稳定的行为,最高$ 10^8 \,$ hz/cm $^2 $。在Mainz Microtron(MAMI)设施上已经进行了具有四个平面三角的测试梁,并在不同的梁条件下评估了其性能。在本文中,给出了$ \ upmu $ tpc聚类的时间性能,并将以高速率对三球限制进行新的测量。

Gaseous detectors are used in high energy physics as trackers or, more generally, as devices for the measurement of the particle position. For this reason, they must provide high spatial resolution and they have to be able to operate in regions of intense radiation, i.e. around the interaction point of collider machines. Among these, Micro Pattern Gaseous Detectors (MPGD) are the latest frontier and allow to overcome many limitations of the pre-existing detectors, such as the radiation tolerance and the rate capability. The gas Electron Multiplier (GEM) is a MPGD that exploits an intense electric field in a reduced amplification region in order to prevent discharges. Several amplification stages, like in a triple-GEM, allow to increase the detector gain and to reduce the discharge probability. Reconstruction techniques such as charge centroid (CC) and micro-Time Projection Chamber ($\upmu$TPC) are used to perform the position measurement. From literature triple-GEMs show a stable behaviour up to $10^8\,$Hz/cm$^2$. A testbeam with four planar triple-GEMs has been performed at the Mainz Microtron (MAMI) facility and their performance was evaluated in different beam conditions. In this article a focus on the time performance for the $\upmu$TPC clusterization is given and a new measurement of the triple-GEM limits at high rate will be presented.

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