论文标题
MUON对撞机的物理发现设施
A Muon Collider Facility for Physics Discovery
论文作者
论文摘要
Muon Colleder提供了一条独特的途径来提供高能量碰撞,从而可以进行发现搜索和精确测量,以扩展我们对物理基本定律的理解。 MUON撞机设计旨在以最高的成本,功耗和时间尺度以最高的能量提供物理覆盖,这相对于其他提议的设施可能证明是有利的。在这种情况下,已经成立了一项新的国际合作,以进一步扩展这种机器的设计概念和性能研究。这项工作的重点是提供$ \ sim $ 10 TEV质量中心(CM)能量设计的元素,以探索物理能量边界。通往这种机器的路径可能会通过较低的能源选项。目前正在考虑3 TEV CM阶段。也可以探索其他能源阶段,例如S渠道Higgs工厂在125 GEV CM处运行。我们将研发和设计工作的状态描述为这种机器,并制定了将这些概念成熟的计划作为高能量物理社区的工具。
Muon colliders provide a unique route to deliver high energy collisions that enable discovery searches and precision measurements to extend our understanding of the fundamental laws of physics. The muon collider design aims to deliver physics reach at the highest energies with costs, power consumption and on a time scale that may prove favorable relative to other proposed facilities. In this context, a new international collaboration has formed to further extend the design concepts and performance studies of such a machine. This effort is focused on delivering the elements of a $\sim$10 TeV center of mass (CM) energy design to explore the physics energy frontier. The path to such a machine may pass through lower energy options. Currently a 3 TeV CM stage is considered. Other energy stages could also be explored, e.g. an s-channel Higgs Factory operating at 125 GeV CM. We describe the status of the R&D and design effort towards such a machine and lay out a plan to bring these concepts to maturity as a tool for the high energy physics community.