论文标题
在高能MUON对撞机上违反Lepton风味的互补信号
Complementary Signals of Lepton Flavor Violation at a High-Energy Muon Collider
论文作者
论文摘要
在新物理学中,MUON对撞机将是对风味违规的有力探测。有一个强烈的互补案例,可用于对撞机的测量和精确的低能探针(以及违反CP)。我们通过研究对撞机的场景中的对撞机的覆盖范围,并使用风味侵略的Slepton混合来说明这一点。我们发现,对撞机可以发现Slectons并以高精度测量Slepton和Neutminino群众,从而使事件重建可以从标准模型背景中清晰地将风味的新物理信号分开。高能MUON对撞机的发现范围将涵盖一个相对大的,重叠的参数空间范围到未来的$μ\ to $ $转换和电子EDM实验,并且与精度实验不同,可以立即阐明负责新物理学的性质的性质。这种互补性增强了穆恩对撞机可能是在标准模型之外寻找物理学的理想能量范围实验室的情况。
A muon collider would be a powerful probe of flavor violation in new physics. There is a strong complementary case for collider measurements and precision low-energy probes of lepton flavor violation (as well as CP violation). We illustrate this by studying the collider reach in a supersymmetric scenario with flavor-violating slepton mixing. We find that the collider could discover sleptons and measure the slepton and neutralino masses with high precision, enabling event reconstruction that could cleanly separate flavor-violating new physics signals from Standard Model backgrounds. The discovery reach of a high-energy muon collider would cover a comparably large, and overlapping, range of parameter space to future $μ\to e$ conversion and electron EDM experiments, and unlike precision experiments could immediately shed light on the nature of new physics responsible for flavor violation. This complementarity strengthens the case that a muon collider could be an ideal energy-frontier laboratory in the search for physics beyond the Standard Model.