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Enhanced Z boson decays as a new probe of first-order electroweak phase transition at future lepton colliders

机译:增强的Z玻色子衰变作为未来轻子对撞机一阶电弱相变的新探索

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We study phenomenological consequences of the strong first-order electroweak phase transition in an extension of the standard model with an inert doublet and vectorlike leptons motivated by the muon g ? 2 anomaly and dark matter. We find that a condition for the strong first-order electroweak phase transition inevitably induces a large logarithmic enhancement in Z boson decays, which relegates the explanation of the anomalous muon g ? 2 at below 2 σ level. Our analysis shows that future lepton collider experiments, especially the Giga- Z at the International Linear Collider and Tera- Z at the Circular Electron Positron Collider as well as Future Circular Collider have great capability to explore the nature of the electroweak phase transition, which is complementary to conventional approaches via measurements of the triple Higgs boson coupling and gravitational waves.
机译:我们在标准模型的扩展中研究了由介子驱动的惰性双峰和矢量样轻子在强一阶电弱相变的现象学后果。 2异常和暗物质。我们发现强的一阶电弱相变的条件不可避免地引起Z玻色子衰变的大对数增强,这使对异常μ的解释变得委婉。 2低于2σ水平。我们的分析表明,未来的轻子对撞机实验,特别是国际线性对撞机的Giga-Z和圆形电子正对撞机的Tera-Z以及未来的圆形对撞机,都具有探索电弱相变本质的强大能力,这就是通过测量三重希格斯玻色子耦合和引力波来补充传统方法。

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