论文标题
未来MUON对撞机检测器的有前途的技术和研发方向
Promising Technologies and R&D Directions for the Future Muon Collider Detectors
论文作者
论文摘要
在LHC后生成的粒子加速器中,MUON对撞机代表了一台独特的机器,具有提供非常高的能量Leptonic碰撞的能力,并打开通往巨大且大多是未开发的物理学程序的道路。但是,从实验方面来说,如此出色的物理潜力伴随着前所未有的技术挑战,这是因为Muons是不稳定的颗粒。他们的衰减产品与机器元素相互作用,并产生巨大的背景颗粒的通量,这些颗粒最终到达检测器并可能降解其性能。在本文中,我们提出的技术有可能符合MUON对撞机检测器的具有挑战性的规格并概述未来研发工作的前进道路。
Among the post-LHC generation of particle accelerators, the muon collider represents a unique machine with capability to provide very high energy leptonic collisions and to open the path to a vast and mostly unexplored physics programme. However, on the experimental side, such great physics potential is accompanied by unprecedented technological challenges, due to the fact that muons are unstable particles. Their decay products interact with the machine elements and produce an intense flux of background particles that eventually reach the detector and may degrade its performance. In this paper, we present technologies that have a potential to match the challenging specifications of a muon collider detector and outline a path forward for the future R&D efforts.