论文标题

未来高能量物理山脉的跟踪和MUON检测的MPGD

MPGDs for tracking and Muon detection at future high energy physics colliders

论文作者

Black, K., Colaleo, A., Aimè, C., Alviggi, M., Aruta, C., Bianco, M., Balossino, I., Bencivenni, G., Bertani, M., Braghieri, A., Cafaro, V., Calzaferri, S., Camerlingo, M. T., Canale, V., Cibinetto, G., Corbetta, M., D'Amico, V., De Lucia, E., Della Pietra, M., Di Donato, C., Di Nardo, R., Domenici, D., Errico, F., Everaerts, P., Fallavollita, F., Farinelli, R., Felici, G., Fiorina, D., Garzia, I., Gatta, M., Giacomelli, P., Giovannetti, M., Gramigna, S., Guida, R., Hohlmann, M., Iengo, P., Iodice, M., Lavezzi, L., Maggi, M., Mandelli, B., Melchiorri, M., Merlin, J. A., Mezzadri, G., Montagna, P., Morello, G., Papalino, G., Pellecchia, A., Petrucci, F., Lener, M. Poli, Radogna, R., Riccardi, C., Rigoletti, M. G., Salvini, P., Scodeggio, M., Sekhniaidze, G., Sessa, M., Simone, F. M., Sharma, A., Stamerra, A., Vai, I., Venditti, R., Verwilligen, P., Vitulo, P., Zaza, A.

论文摘要

在接下来的几年中,实验粒子物理的能量和强度边界将通过现有加速器(CERN的LHC)的升级(LHC)的升级,并设想在能量尺度上构造新机器,高达数百个TEV或前所未有的强度(FCC-HH,FCC-HH,FCC-EE,FCC-EE,ILC,ILC,MUON Collider)。为了完成物理计划,需要大尺寸,具有成本效益的高效检测系统。 MPGD提供了多种技术,可允许他们应对未来设施所需的性能挑战,这要归功于每种技术提供的特定优势。 MPGD允许使用环保气体混合物,在非常高的背景粒子通量具有高检测效率和出色的空间分辨率下进行稳定的操作。这些功能使MPGD成为在将来的HEP Colliders中通用探测器中精确的MUON跟踪和触发系统的主要选择之一。此外,低材料预算和基本材料的灵活性使MPGD适用于Lepton Colliders在Lepton Colliders上开发非常轻巧,全圆柱精细跟踪器的内部跟踪器。正在进行的研发旨在以每种技术的限制推动检测器性能。我们正在继续巩固大型检测器的构建和稳定运行,能够应对大粒子通量。在这份白皮书中,我们描述了一些最突出的MPGD技术,它们的性能测量,最新应用中面临的挑战,以及在未来高能物理颜色的有效跟踪和MUON检测方面的改进领域。

In the next years, the energy and intensity frontiers of the experimental Particle Physics will be pushed forward with the upgrade of existing accelerators (LHC at CERN) and the envisaged construction of new machines at energy scales up to hundreds TeV or with unprecedented intensity (FCC-hh, FCC-ee, ILC, Muon Collider). Large size, cost-effective, high-efficiency detection systems in high background environments are required in order to accomplish the physics program. MPGDs offer a diversity of technologies that allow them to meet the required performance challenges at future facilities thanks to the specific advantages that each technology provides. MPGDs allow stable operation, with environmentally friendly gas mixtures, at very high background particle flux with high detection efficiency and excellent spatial resolution. These features make MPGD one of the primary choices as precise muon tracking and trigger system in general-purpose detectors at future HEP colliders. In addition, the low material budget and the flexibility of the base material make MPGDs suitable for the development of very light, full cylindrical fine tracking inner trackers at lepton colliders. On-going R&Ds aim at pushing the detector performance at the limits of each technology. We are working in continuing to consolidate the construction and stable operation of large-size detectors, able to cope with large particle fluxes. In this white paper, we describe some of the most prominent MPGD technologies, their performance measurements, the challenges faced in the most recent applications, and the areas of improvement towards efficient tracking and Muon detection at future high energy physics colliders.

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