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Towards the discovery of new physics with lepton-universality ratios of b→s?? decays

机译:迈向发现具有b→s的轻子-大学比的新物理学?衰变

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摘要

Tests of lepton-universality as rate ratios in b → s ? ? transitions can be predicted very accurately in the Standard Model. The deficits with respect to expectations reported by the LHCb experiment in muon-to-electron ratios of the B → K ( * ) ? ? decay rates thus point to genuine manifestations of lepton nonuniversal new physics. In this paper, we analyze these measurements in the context of effective field theory. First, we discuss the interplay of the different operators in R K and R K * and provide predictions for R K * in the Standard Model and in new-physics scenarios that can explain R K . We also provide approximate numerical formulas for these observables in bins of interest as functions of the relevant Wilson coefficients. Secondly, we perform frequentist fits to R K and R K * . The Standard Model disagrees with these measurements at 3.7 σ significance. We find excellent fits in scenarios with combinations of O 9 ( 10 ) ? = s ˉ γ μ b L ? γ μ ( γ 5 ) ? operators, with pulls relative to the Standard Model in the region of 4 σ . An important conclusion of our analysis is that a lepton-specific contribution to O 10 is important to understand the data. Under the hypothesis that new-physics couples selectively to the muons, we also present fits to other b → s μ μ data with a conservative error assessment and comment on more general scenarios. Finally, we discuss new lepton universality ratios that, if new physics is the origin of the observed discrepancy, should contribute to the statistically significant discovery of new physics in the near future.
机译:以b→s?中的比率表示的轻子大学的检验?在标准模型中可以非常准确地预测转变。 LHCb实验报道的B→K(*)?的μ子电子比中的预期缺陷。 ?因此,衰变率表明了轻子非宇宙新物理学的真实表现。在本文中,我们在有效场论的背景下分析了这些测量。首先,我们讨论R K和R K *中不同算符的相互作用,并在标准模型和可以解释R K的新物理场景中提供对R K *的预测。我们还提供了感兴趣的箱中这些可观察物的近似数值公式,作为相关威尔逊系数的函数。其次,我们对R K和R K *进行频繁拟合。标准模型与3.7σ显着性下的这些测量结果不一致。我们发现在O 9(10)组合的情况下非常适合吗? = sγγb L? γμ(γ5)?运算符,相对于标准模型在4σ范围内具有拉。我们分析的一个重要结论是,对O 10的轻子特异性贡献对于理解数据很重要。在新物理学选择性地耦合到μ子的假设下,我们还通过保守的误差评估来拟合其他b→sμμ数据,并对更一般的情况进行评论。最后,我们讨论了新的轻子普适性比,如果新物理是观察到的差异的起源,则应在不久的将来对新物理的统计意义重大发现做出贡献。

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