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Higgs couplings and new signals from Flavon–Higgs mixing effects within multi-scalar models

机译:希格斯耦合和Flavon–Higgs混合效应在多标量模型中产生的新信号

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摘要

Testing the properties of the Higgs particle discovered at the LHC and searching for new physics signals, are some of the most important tasks of Particle Physics today. Current measurements of the Higgs couplings to fermions and gauge bosons, seem consistent with the Standard Model, and when taken as a function of the particle mass, should lay on a single line. However, in models with an extended Higgs sector the diagonal Higgs couplings to up-quarks, down-quarks and charged leptons, could lay on different lines, while non-diagonal flavor-violating Higgs couplings could appear too. We describe these possibilities within the context of multi-Higgs doublet models that employ the Froggatt–Nielsen (FN) mechanism to generate the Yukawa hierarchies. Furthermore, one of the doublets can be chosen to be of the inert type, which provides a viable dark matter candidate. The mixing of the Higgs doublets with the flavon field, can provide plenty of interesting signals, including: i) small corrections to the couplings of the SM-like Higgs, ii) exotic signals from the flavon fields, iii) new signatures from the heavy Higgs bosons. These aspects are studied within a specific model with 3 + 1 Higgs doublets and a singlet FN field. Constraints on the model are derived from the study of K and D mixing and the Higgs search at the LHC. For last, the implications from the latter aforementioned constraints to the FCNC top decay t → c h are presented too.
机译:测试在大型强子对撞机中发现的希格斯粒子的性质并寻找新的物理信号,是当今粒子物理最重要的任务。希格斯耦合到费米子和规范玻色子的电流测量值似乎与标准模型一致,并且当作为颗粒质量的函数时,应放在一条直线上。但是,在具有扩展的希格斯扇形的模型中,对角希格斯偶合器与上夸克,下夸克和带电荷的轻子可能位于不同的直线上,而非对角违反口味的希格斯偶合器也会出现。我们在采用Froggatt-Nielsen(FN)机制生成Yukawa层次结构的多重Higgs doublet模型的上下文中描述了这些可能性。此外,双合体之一可以选择为惰性类型,其提供了可行的暗物质候选物。希格斯双峰与黄酮场的混合可以提供许多有趣的信号,包括:i)对类似SM希格斯耦合的小校正,ii)黄酮场中的奇异信号,iii)重质信号的新特征希格斯玻色子。在具有3 +1个希格斯双峰和单峰FN场的特定模型中研究了这些方面。该模型的约束源自对K和D混合的研究以及LHC处的Higgs搜索。最后,也提出了后面提到的约束对FCNC顶部衰变t→c h的影响。

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