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Minimal Coleman-Weinberg theory explains the diphoton excess

机译:最小的Coleman-Weinberg理论解释了Diphoton超额

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We replace the standard Higgs-mechanism by the Coleman-Weinberg mechanism, and investigate its viability through the addition of a new scalar field. As we showed in a previous study, minimal models of this type can alleviate the hierarchy problem of the Higgs-mass through the so-called Veltman conditions. We here extend the previous analysis by taking into account the important difference between running mass and pole mass of the scalar states. We then investigate whether these theories can account for the 750 GeV excess in diphotons observed by the LHC collaborations. New QCD-colored fermions in the TeV mass range coupled to the new scalar state are needed to describe the excess. We further show, by explicit computation of the running of the couplings, that the model is under perturbative control till just above the masses of the heaviest states of the theory. We further suggest related testable signatures and thereby show that the LHC experiments can test these models.
机译:我们通过Coleman-Weinberg机制取代标准的HIGGS机制,并通过添加新的标量字段来调查其可行性。 正如我们在先前的研究中所示,这种类型的最小模型可以通过所谓的Veltman条件来缓解HIGGS质量的层次问题。 我们在此考虑到标量和标量态的运行质量和杆质量之间的重要区别,延长了先前的分析。 然后,我们调查这些理论是否可以占LHC合作观察到的二色斑层的750 GEV。 耦合到新标量状态的TEV质量范围内的新QCD色度差异来描述过剩。 我们进一步通过显式计算耦合的运行来表现出,该模型在扰动控制下,直到刚刚高于理论的最重的群体。 我们进一步提出了相关的可测试签名,从而表明LHC实验可以测试这些模型。

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