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Phenomenology of induced electroweak symmetry breaking

机译:诱导ElectroWeak对称性断裂的现象学

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A bstract We study the phenomenology of models of electroweak symmetry breaking where the Higgs potential is destabilized by a tadpole arising from the coupling to an “auxiliary” Higgs sector. The auxiliary Higgs sector can be either perturbative or strongly coupled, similar to technicolor models. Since electroweak symmetry breaking is driven by a tadpole, the cubic and quartic Higgs couplings can naturally be significantly smaller than their values in the standard model. The theoretical motivation for these models is that they can explain the 125 GeV Higgs mass in supersymmetry without fine-tuning. The auxiliary Higgs sector contains additional Higgs states that cannot decouple from standard model particles, so these models predict a rich phenomenology of Higgs physics beyond the standard model. In this paper we analyze a large number of direct and indirect constraints on these models. We present the current constraints after the 8 TeV run of the LHC, and give projections for the sensitivity of the upcoming 14 TeV run. We find that the strongest constraints come from the direct searches A _(0)→ Zh , A 0 → t t ˉ $$ {A}^0o toverline{t} $$ , with weaker constraints from Higgs coupling fits. For strongly-coupled models, additional constraints come from ρ _(+)→ WZ where ρ _(+)is a vector resonance. Our overall conclusion is that a significant parameter space for such models is currently open, allowing values of the Higgs cubic coupling down to 0 . 4 times the standard model value for weakly coupled models and vanishing cubic coupling for strongly coupled models. The upcoming 14 TeV run of the LHC will stringently test this scenario and we identify several new searches with discovery potential for this class of models.
机译:Bstract我们研究了ElectroWeak对称性模型的现象学,其中Higgs潜力由由偶联与“辅助”HIGGS扇区产生的蝌蚪不稳定。辅助HIGGS扇区可以是刺痛的或强烈耦合的,类似于技术型模型。由于ElectRoweak对称性断裂由蝌蚪驱动,因此立方和四峰的HIGGS耦合可以自然地明显小于标准模型中的值。这些模型的理论动机是它们可以在没有微调的情况下解释超对称的125个GEV HIGGS质量。辅助HIGGS扇区含有额外的HIGGS状态,不能从标准模型粒子脱钩,因此这些模型预测了超出标准模型的HGGS物理的丰富现象学。在本文中,我们对这些模型分析了大量的直接和间接约束。我们在LHC的8 TEV运行后介绍了当前的约束,并为即将到来的14 TEV运行的灵敏度提供预测。我们发现最强大的约束来自直接搜索A _(0)→Zh,0→Tˉ$$ {a} ^ 0 to t overline {t} $$,具有来自HIGGS耦合的较弱的约束。对于强耦合模型,附加约束来自ρ_(+)→WZ,其中ρ_(+)是向量谐振。我们的整体结论是,此类模型的重要参数空间目前是打开的,允许Higgs立方耦合的值下降到0。用于弱耦合模型的标准型号的4倍,为强耦合模型消失立方体耦合。即将到来的14 TEV运行LHC将严格地测试此方案,并为这类模型的发现潜力识别几个新的搜索。

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