论文标题
3 TEV MUON撞机阶段的物理案例
The physics case of a 3 TeV muon collider stage
论文作者
论文摘要
在通向带有10 TEV或更多质量能量中心的MUON对撞机的道路上,TEV的一个阶段是一种吸引人的选择。审查这种MUON对撞机的物理潜力是本文档的主要目的。为了概述在整个阶段的物理表现的进展,还提供了一些较高能量的灵敏度预测。在3 TEV MUON对撞机上,有很多机会探测新物理。其中一些是与Clic 3 TEV能量阶段的广泛文献记录的物理案例相同的,包括测量Higgs三联耦合并测试Higgs Boson的可能的复合性质和20 TEV量表的Top Quark。其他机会是3 TEV MUON对撞机的独特之处,源于Muons是碰撞而不是电子的事实。通过研究探索当前$ g $ -2和$ b $ - $ - 物理学异常的显微镜起源的潜力,这可以说明这一点。
In the path towards a muon collider with center of mass energy of 10 TeV or more, a stage at 3 TeV emerges as an appealing option. Reviewing the physics potential of such muon collider is the main purpose of this document. In order to outline the progression of the physics performances across the stages, a few sensitivity projections for higher energy are also presented. There are many opportunities for probing new physics at a 3 TeV muon collider. Some of them are in common with the extensively documented physics case of the CLIC 3 TeV energy stage, and include measuring the Higgs trilinear coupling and testing the possible composite nature of the Higgs boson and of the top quark at the 20 TeV scale. Other opportunities are unique of a 3 TeV muon collider, and stem from the fact that muons are collided rather than electrons. This is exemplified by studying the potential to explore the microscopic origin of the current $g$-2 and $B$-physics anomalies, which are both related with muons.