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首页> 外文期刊>Journal of High Energy Physics >Lepton universality violation with lepton flavor conservation in B-meson decays
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Lepton universality violation with lepton flavor conservation in B-meson decays

机译:B介子衰变中的轻子普遍性违反与轻子风味保护

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摘要

Anomalies in semileptonic B-meson decays present interesting patterns that might be revealing the shape of the new physics to come. Under the assumption that neutrino and charged lepton mass terms are the only sources of flavor violation and given the hierarchy between the two, we find that charged lepton universality violation without charged lepton flavor violation naturally arises. This can account for a deficit of B + → K + μμ over B + → K + ee decays with new physics coupled predominantly to muons and a new physics scale of a few TeV. A generic prediction of this scenario is a large enhacement of tauonic B decay rates that, in particular, could accommodate an excess in B → D (∗) τ ν. For the most part, the study is carried out in an effective field theory framework with an underlying SU(2) L × U(1) Y symmetry that emphasizes the model-independent correlations between low- and high-energy observables. As an example, a connection between B-decays and top physics is pointed out. To complement the discussion, all possible (spin 0 and 1) leptoquark models are matched to the low-energy field theory so that the effective analysis can be used to survey these candidates for new physics
机译:半轻子B介子衰变的异常呈现出有趣的模式,可能揭示了即将出现的新物理学的形态。在中微子和带电轻子质量项是造成风味违背的唯一原因的假设下,考虑到两者之间的层次关系,我们发现,带电轻子普遍性违背而无带电轻子风味违背自然而然地出现了。这可以解释B +→K +μμ相对于B +→K + ee衰变的缺陷,其中新的物理学主要与μ子耦合,新的物理学尺度为几个TeV。对这种情况的一般预测是大量提高了牛磺酸B的衰变速率,特别是可以适应B→D(∗)τν中的​​过量现象。大部分情况下,该研究是在一个有效的场论框架下进行的,该框架具有潜在的SU(2)L×U(1)Y对称性,该对称性强调了低能和高能观测值之间与模型无关的相关性。例如,指出了B衰变和顶级物理学之间的联系。为了补充讨论,将所有可能的(旋转0和1)轻夸克模型与低能场理论相匹配,以便可以使用有效的分析方法来调查这些候选新物理

著录项

  • 来源
    《Journal of High Energy Physics 》 |2015年第10期| 1-30| 共30页
  • 作者单位

    1.Department of Physics University of California San Diego 9500 Gilman Drive La Jolla CA 92093-0319 U.S.A.;

    1.Department of Physics University of California San Diego 9500 Gilman Drive La Jolla CA 92093-0319 U.S.A.;

    1.Department of Physics University of California San Diego 9500 Gilman Drive La Jolla CA 92093-0319 U.S.A. 2.PRISMA Cluster of Excellence Institut für Kernphysik Johannes Gutenberg-Universität Mainz Staudingerweg 9 55128 Mainz Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rare Decays; Beyond Standard Model; B-Physics;

    机译:稀有衰减;超出标准模型;B物理;

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