论文标题

部分可观测时空混沌系统的无模型预测

Snowmass White Paper: Probing New Physics with $μ^+ μ^- \to bs$ at a Muon Collider

论文作者

Altmannshofer, Wolfgang, Gadam, Sri Aditya, Profumo, Stefano

论文摘要

在这份白皮书中,我们讨论了与MUON对撞机的持续性稀有$ B $衰减异常的新物理解释的前景。如果异常是重型新物理学的间接迹象,则应在MUON对撞机中观察到$μ^+μ^ - \ to b s $生产的非标准率,其质量为$ \ sqrt {s} = 10 $ tev。 $ b $ -JET的前进不对称性提供了新物理耦合的手性结构的诊断。在没有信号的情况下,$μ^+μ^ - \ to b s $可以间接探测新的物理量表,最大为$ 86 $ tev。光束极化将对新的物理敏感性产生重要影响。

In this white paper for the Snowmass process, we discuss the prospects of probing new physics explanations of the persistent rare $B$ decay anomalies with a muon collider. If the anomalies are indirect signs of heavy new physics, non-standard rates for $μ^+ μ^- \to b s$ production should be observed with high significance at a muon collider with center of mass energy of $\sqrt{s} = 10$ TeV. The forward-backward asymmetry of the $b$-jet provides diagnostics of the chirality structure of the new physics couplings. In the absence of a signal, $μ^+ μ^- \to b s$ can indirectly probe new physics scales as large as $86$ TeV. Beam polarization would have an important impact on the new physics sensitivity.

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