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Power meets precision to explore the symmetric Higgs portal

机译:权力符合精确度探索对称HIGGS门户

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We perform a comprehensive study of collider aspects of a Higgs portal scenario that is protected by an unbroken Z2 symmetry. If the mass of the Higgs portal scalar is larger than half the Higgs mass, this scenario becomes very difficult to detect. We provide a detailed investigation of the model's parameter space based on analyses of the direct collider sensitivity at the LHC as well as at future lepton and hadron collider concepts and analyse the importance of these searches for this scenario in the context of expected precision Higgs and electroweak measurements. In particular we also consider the associated electroweak oblique corrections that we obtain in a first dedicated two-loop calculation for comparisons with the potential of, e.g., GigaZ. The currently available collider projections corroborate an FCC-hh 100 TeV as a very sensitive tool to search for such a weakly-coupled Higgs sector extension, driven by small statistical uncertainties over a large range of energy coverage. Crucially, however, this requires good theoretical control. Alternatively, Higgs signal-strength measurements at an optimal FCC-ee sensitivity level could yield comparable constraints.
机译:我们对由不间断Z2对称保护的HIGGS门户方案的碰撞者方面进行了全面的研究。如果HGGS门户标量的质量大于HIGGS质量的一半,则这种情况变得非常难以检测。我们根据LHC的直接碰撞器敏感度以及未来的Lepton和Hadron Collider概念分析了对模型参数空间的详细调查,并在预期的精密Higgs和Electwoweak的背景下分析了这些场景的重要性测量。特别地,我们还考虑了相关的Electroweak倾斜校正,以便在第一次专用的双环计算中获得,以便与巨大的巨大的比较进行比较。目前可用的碰撞钻机投影将FCC-HH 100 TEV作为一个非常敏感的工具,以搜索这种弱耦合的HIGGS扇区扩展,在大范围的能量覆盖范围内的小统计不确定性驱动。然而,至关重要的是,这需要良好的理论控制。或者,最佳FCC-EE灵敏度水平的HIGG信号强度测量可以产生可比的约束。

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