A precision relation between Γ(K → μ+μ−)(t) and $$ \mathcal{B}\left({K}_L\to {\mu}^{+}{\mu}^{-}\right)/\mathcal{B}\left({K}_L\to \gamma \gamma \right) $$

Author:

Dery Avital,Ghosh Mitrajyoti,Grossman Yuval,Kitahara Teppei,Schacht Stefan

Abstract

Abstract We find that the phase appearing in the unitarity relation between $$ \mathcal{B}\left({K}_L\to {\mu}^{+}{\mu}^{-}\right) $$ B K L μ + μ and $$ \mathcal{B}\left({K}_L\to \gamma \gamma \right) $$ B K L γγ is equal to the phase shift in the interference term of the time- dependent Kμ+μ decay. A probe of this relation at future kaon facilities constitutes a Standard Model test with a theory precision of about 2%. The phase has further importance for sensitivity studies regarding the measurement of the time-dependent Kμ+μ decay rate to extract the CKM matrix element combination $$ \mid {V}_{ts}{V}_{td}\sin \left(\beta +{\beta}_s\right)\mid \approx {A}^2{\lambda}^5\overline{\eta} $$ V ts V td sin β + β s A 2 λ 5 η ¯ . We find a model-independent theoretically clean prediction, cos2φ0 = 0.96 ± 0.03. The quoted error is a combination of the theoretical and experimental errors, and both of them are expected to shrink in the future. Using input from the large-NC limit within chiral perturbation theory, we find a theory preference towards solutions with negative cos φ0, reducing a four-fold ambiguity in the angle φ0 to a two-fold one.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Improved Standard-Model prediction for KL → ℓ+ℓ−;Journal of High Energy Physics;2024-04-12

2. Workshop summary: Kaons@CERN 2023;The European Physical Journal C;2024-04-09

3. Impact of indirect CP violation on Br(KS → μ+μ−)ℓ=0;Journal of High Energy Physics;2023-05-18

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