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Minimal Coleman-Weinberg theory explains the diphoton excess

机译:最小科尔曼-温伯格理论解释了双光子过量

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摘要

It is possible to delay the hierarchy problem, by replacing the standard Higgs-sector by the Coleman-Weinberg mechanism, and at the same time ensure perturbative naturalness through the so-called Veltman conditions. As we showed in a previous study, minimal models of this type require the introduction of an extra singlet scalar further coupled to new fermions. In this constrained setup the Higgs mass was close to the observed value and the new scalar mass was below a TeV scale. Here we first 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:通过用Coleman-Weinberg机制代替标准的希格斯扇形,可以延迟层次结构问题,同时通过所谓的Veltman条件确保扰动自然性。正如我们在先前的研究中所显示的,这种类型的最小模型需要引入额外的单重态标量,并进一步与新的费米子耦合。在这种受限设置中,希格斯质量接近观测值,新标量质量低于TeV标度。在这里,我们首先通过考虑标量状态的运行质量和极质量之间的重要差异来扩展先前的分析。然后,我们调查这些理论是否可以解释由LHC合作观察到的750 GeV双光子过量。需要用TeV质量范围内的新QCD色费米子与新的标量状态耦合来描述过量的费米子。通过对联轴器运行的显式计算,我们进一步表明,该模型处于摄动控制之下,直到刚好超过理论中最重状态的质量。我们进一步建议相关的可测试签名,从而表明LHC实验可以测试这些模型。

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