揭示 $b \to s μ^+ μ^-$ 重子衰变模式中的 $q^2$ 相关性

Ajay Kumar Yadav, Manas Kumar Mohapatra, Suchismita Sahoo
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引用次数: 0

摘要

来自大型强子对撞机b实验和$B$工厂的测量揭示了涉及夸克级转变$b \to s \ell^+ \ell^-$ 的稀有半轻子$B$衰变的角度观测数据的一些差异。 在这项工作中,我们对重子$\Lambda_b$、$\Sigma_b$和$\Xi_b$的稀有半轻子衰变进行了独立于模型的比较分析,探索了各种新的物理情景。我们的分析包括对标准模型和六种不同的新物理情景中的分支比和角观测值的预测,包括前后不对称、纵向极化分数和轻子味道普遍性比。值得注意的是,我们发现某些新物理情景极大地影响了$(\Lambda_b, \Sigma_b, \Xi_b) \to (\Lambda, \Sigma, \Xi) \mu^+ \mu^-$过程中的观测值。
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Revealing the $q^2$ dependence in $b \to s μ^+ μ^-$ baryonic decay modes
Measurements from the LHCb experiment and $B$ factories have revealed several discrepancies in angular observables of rare semileptonic $B$ decays involving the quark-level transition $b \to s \ell^+ \ell^-$. In this work, we conduct a model-independent comparative analysis of the rare semileptonic decays of baryons $\Lambda_b$, $\Sigma_b$ and $\Xi_b$, exploring various new physics scenarios. Our analysis includes predictions for branching ratios and angular observables, including forward-backward asymmetry, longitudinal polarization fractions, and lepton flavor universality ratios, both within the Standard Model and across six distinct new physics scenarios. Notably, we find that certain new physics scenarios significantly affect the observables in the $(\Lambda_b, \Sigma_b, \Xi_b) \to (\Lambda, \Sigma, \Xi) \mu^+ \mu^-$ processes.
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