论文标题

山脉的多相临界希格斯玻色子

Multi-phase critical Higgs boson at colliders

论文作者

Huitu, Katri, Kannike, Kristjan, Koivunen, Niko, Marzola, Luca, Mondal, Subhadeep, Raidal, Martti

论文摘要

Coleman-Weinberg模型中最近提出的多相关键性原理可以为Electroweak和新物理量表之间的层次结构提供新的解释。当应用于标准模型时,Higgs玻色子像伪造量不变性的伪金石玻色子一样光线发生。两个光场之间的抑制混合仍然包含有关对称性大规模破裂的信息,尽管达到对数校正。在这项工作中,我们使用当前的LHC数据来探究这种情况,并评估未来的Lepton和Handron Colliders的影响。我们的结果表明,在当前实验中测试的能量量表上,多相关键性可以轻松解释明显缺乏新物理学。

The recently proposed multi-phase criticality principle in Coleman-Weinberg models can provide a new explanation for the hierarchy between the electroweak and new physics scales. When applied to the Standard Model, a Higgs boson as light as the pseudo-Goldstone boson of broken scale invariance occurs. The suppressed mixing between the two light fields still carries information about the large scale of symmetry breaking, albeit up to logarithmic corrections. In this work we probe this scenario with the present LHC data and assess the impact of future lepton and hadron colliders. Our results show that the multi-phase criticality can easily explain the apparent absence of new physics at the energy scales tested in current experiments.

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