用于未来电子-离子对撞机前向跟踪的GEM探测器的研发

A. Zhang, V. Bhopatkar, M. Hohlmann, X. Bai, K. Gnanvo, N. Liyanage, M. Posik, B. Surrow
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引用次数: 7

摘要

我们报告了在未来电子离子对撞机(EIC)实验中用于前向跟踪器(FT)的大型三重gem探测器的研发状况,这将提高我们对QCD的理解。我们设计了一个专门针对EIC-FT的探测器原型,该探测器具有梯形形状,开口角为30.1°。我们正在研究不同的探测器组装技术和信号读出技术,但已经设计了一种通用的GEM箔,以最大限度地降低NRE箔生产成本。组装技术包括一个纯机械方法,包括箔拉伸,由CMS首创,但有一定的修改,或粘合箔框架,然后机械组装,或粘合箔框架,然后粘在一起。前两种装配技术允许重新打开腔室,以便GEM箔在损坏时可以更换。对于读出技术,我们正在追求具有成本效益的一维读出,具有宽之字形条带,保持合理的空间分辨率,以及二维读出-一个具有立体角(u-v)条带和另一个具有r-φ条带。此外,我们的目标是设计一个整体的低质量探测器,以促进低动量散射电子的良好能量分辨率。我们目前设计的GEM箔和其他探测器部件,我们计划完全从美国公司收购。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
R&D on GEM detectors for forward tracking at a future Electron-Ion Collider
We report the status of R&D on large triple-GEM detectors for a forward tracker (FT) in an experiment at a future Electron Ion Collider (EIC) that will improve our understanding of QCD. We have designed a detector prototype specifically targeted for the EIC-FT, which has a trapezoidal shape with 30.1° opening angle. We are investigating different detector assembly techniques and signal readout technologies, but have designed a common GEM foil to minimize NRE cost for foil production. The assembly techniques comprise either a purely mechanical method including foil stretching as pioneered by CMS but with certain modifications, or gluing foils to frames that are then assembled mechanically, or gluing foils to frames that are then glued together. The first two assembly techniques allow for re-opening chambers so that a GEM foil can be replaced if it is damaged. For readout technologies, we are pursuing a cost-effective one-dimensional readout with wide zigzag strips that maintains reasonable spatial resolution, as well two-dimensional readouts - one with stereo-angle (u-v) strips and another with r-φ strips. In addition, we aim at an overall low-mass detector design to facilitate good energy resolution for electrons scattered at low momenta. We present design for GEM foils and other detector parts, which we plan to entirely acquire from U.S. companies.
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