介子混合中风味破坏新来源的提示

M. Blanke
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引用次数: 1

摘要

费米实验室晶格和MILC合作对进入$B_{d,s}-\bar B_{d,s}$混合的强子矩阵元素的最新结果表明,质量差的测量值$\Delta M_{d,s}$与他们的SM预测存在显著的张力。我们回顾了这些结果的含义在约束最小风味违反模型的背景下。在这些模型中,CKM元素$\gamma$和$|V_{ub}|/|V_{cb}|$可以通过$B_{d,s}-\bar B_{d,s}$混合观测值来确定,从而得出$\gamma$低于其树级值的预测。随后从$\Delta M_s$或$\varepsilon_K$的测量值确定$|V_{cb}|$给出了不一致的结果,张力在标准模型极限中最小。如果对$\Delta F = 2$可观察性的新贡献的风味普遍性被打破,这种紧张关系可以得到解决。我们简要地讨论$U(2)^3$风味模型的情况作为一个说明性的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hints for new sources of flavour violation in meson mixing
The recent results by the Fermilab Lattice and MILC collaborations on the hadronic matrix elements entering $B_{d,s}-\bar B_{d,s}$ mixing show a significant tension of the measured values of the mass differences $\Delta M_{d,s}$ with their SM predictions. We review the implications of these results in the context of Constrained Minimal Flavour Violation models. In these models, the CKM elements $\gamma$ and $|V_{ub}|/|V_{cb}|$ can be determined from $B_{d,s}-\bar B_{d,s}$ mixing observables, yielding a prediction for $\gamma$ below its tree-level value. Determining subsequently $|V_{cb}|$ from the measured value of either $\Delta M_s$ or $\varepsilon_K$ gives inconsistent results, with the tension being smallest in the Standard Model limit. This tension can be resolved if the flavour universality of new contributions to $\Delta F = 2$ observables is broken. We briefly discuss the case of $U(2)^3$ flavour models as an illustrative example.
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