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Probing New Physics Through CP Violation in B_((s))to Vμ^+μ^- Decays

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arxiv 2504.16014 v1 pith:JYGBRHRG submitted 2025-04-22 hep-ph hep-th

Probing New Physics Through CP Violation in $B_{(s)}\to V\mu^+\mu^-$ Decays

classification hep-ph hep-th
keywords decaysphysicscurrentangularcoefficientsdataexperimentalobservables
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Rare decays of the kind $B\to K^*\mu^+\mu^-$ and $B_s\to \phi\mu^+\mu^-$ are key players for testing the Standard Model. The current experimental data for their decay rates and angular observables show tensions with the theoretical predictions that may be indications of New Physics. We present a strategy to extract the relevant short-distance coefficients in the presence of new sources of CP violation, utilizing a synergy with $B\to K\mu^+\mu^-$ decays. Using the current data as a guideline, we illustrate the new method to determine the complex coefficients $C_9^{(\prime)}$ and $C_{10}^{(\prime)}$ using only four angular observables. Interestingly, the current experimental picture leaves significant room for CP-violating New Physics. We discuss also the link to leptonic $B^0_s\to\mu^+\mu^-$ decays. We are looking forward to the implementation of these strategies at the future high-precision frontier of flavour physics.

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  1. $C\!P$ violation analysis of local and nonlocal amplitudes in the $\overline{B}^0 \to \overline{K}^{*0}\mu^+\mu^-$ decay

    hep-ex 2026-05 unverdicted novelty 4.0

    LHCb measures CP-violating Wilson coefficients in B0 -> K*0 mu+ mu- with higher precision than before and finds results consistent with the Standard Model.