meson decays
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2021 ◽  
Vol 104 (11) ◽  
Author(s):  
Si-Hong Zhou ◽  
Run-Hui Li ◽  
Zheng-Yi Wei ◽  
Cai-Dian Lü

2021 ◽  
Vol 104 (9) ◽  
Author(s):  
Rohini M. Godbole ◽  
Siddharth P. Maharathy ◽  
Sanjoy Mandal ◽  
Manimala Mitra ◽  
Nita Sinha

2021 ◽  
Vol 104 (7) ◽  
Author(s):  
Helmut Eberl ◽  
Keisho Hidaka ◽  
Elena Ginina ◽  
Akimasa Ishikawa
Keyword(s):  
B Meson ◽  

2021 ◽  
Vol 2021 (10) ◽  
Author(s):  
Fang-Min Cai ◽  
Wei-Jun Deng ◽  
Xin-Qiang Li ◽  
Ya-Dong Yang

Abstract With updated experimental data and improved theoretical calculations, several significant deviations are being observed between the Standard Model predictions and the experimental measurements of the branching ratios of $$ {\overline{B}}_{(s)}^0\to {D}_{(s)}^{\left(\ast \right)+}{L}^{-} $$ B ¯ s 0 → D s ∗ + L − decays, where L is a light meson from the set {π, ρ, K(∗)}. Especially for the two channels $$ {\overline{B}}^0\to {D}^{+}{K}^{-} $$ B ¯ 0 → D + K − and $$ {\overline{B}}_s^0\to {D}_s^{+}{\pi}^{-} $$ B ¯ s 0 → D s + π − , both of which are free of the weak annihilation contribution, the deviations observed can even reach 4–5σ. Here we exploit possible new-physics effects in these class-I non-leptonic B-meson decays within the framework of QCD factorization. Firstly, we perform a model-independent analysis of the effects from twenty linearly independent four-quark operators that can contribute, either directly or through operator mixing, to the quark-level b →$$ c\overline{u}d(s) $$ c u ¯ d s transitions. It is found that, under the combined constraints from the current experimental data, the deviations observed could be well explained at the 1σ level by the new-physics four-quark operators with γμ(1 − γ5) ⨂ γμ(1 − γ5) structure, and also at the 2σ level by the operators with (1 + γ5) ⨂ (1 − γ5) and (1 + γ5) ⨂ (1 + γ5) structures. However, the new-physics four-quark operators with other Dirac structures fail to provide a consistent interpretation, even at the 2σ level. Then, as two specific examples of model-dependent considerations, we discuss the case where the new-physics four-quark operators are generated by either a colorless charged gauge boson or a colorless charged scalar, with their masses fixed both at the 1 TeV. Constraints on the effective coefficients describing the couplings of these mediators to the relevant quarks are obtained by fitting to the current experimental data.


2021 ◽  
Vol 36 (26) ◽  
Author(s):  
Pei-Cheng Jiang ◽  
Xuan Wang ◽  
Da-Yong Wang

In the system of a pair of quantum-entangled neutral kaons from meson decays, when one kaon collapses into the [Formula: see text] state, the other will collapse instantaneously into the [Formula: see text] state, due to entanglement and nonlocality. However, if the alternative hypothesis is correct and there is a time window during which one kaon is unaware that the other has decayed, some quantum mechanically prohibited [Formula: see text] decays may occur. We calculate the branching ratios of [Formula: see text] in vector meson decays under locality hypothesis and compare them with experimental results. We show that the branching ratio of [Formula: see text] under locality assumption is already excluded by the BESIII experimental upper limit. Additional experimental results are proposed to perform this test in the future.


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