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Gravitational waves and electroweak baryogenesis in a global study of the extended scalar singlet model

机译:在延长标量单态模型的全球研究中的引力波和ElectroWeak Baryogry

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A bstract We perform a global fit of the extended scalar singlet model with a fermionic dark matter (DM) candidate. Using the most up-to-date results from the Planck measured DM relic density, direct detection limits from the XENON1T (2018) experiment, electroweak precision observables and Higgs searches at colliders, we constrain the 7-dimensional model parameter space. We also find regions in the model parameter space where a successful electroweak baryogenesis (EWBG) can be viable. This allows us to compute the gravitational wave (GW) signals arising from the phase transition, and discuss the potential discovery prospects of the model at current and future GW experiments. Our global fit places a strong upper and lower limit on the second scalar mass, the fermion DM mass and the scalar-fermion DM coupling. In agreement with previous studies, we find that our model can simultaneously yield a strong first-order phase transition and saturate the observed DM abundance. More importantly, the GW spectra of viable points can often be within reach of future GW experiments such as LISA, DECIGO and BBO.
机译:Bstract我们用Fermionic暗物质(DM)候选人执行扩展标量单态模型的全球合适。利用普朗克测量的DM遗物密度的最新结果,来自Xenon1T(2018)实验的直接检测限制,Electroweak精密可观察到和HIGGS在煤机上搜索,我们限制了7维模型参数空间。我们还在模型参数空间中找到区域,其中成功的Electroweak Baryogenesis(EWBG)可以是可行的。这使我们能够计算由相转变产生的引力波(GW)信号,并讨论当前和未来GW实验中模型的潜在发现前景。我们的全球适合在第二个标量质量,FERMION DM质量和标量射频DM耦合下放置强大的上限和下限。在与之前的研究一致中,我们发现我们的模型可以同时产生强大的一阶相转变并使观察到的DM丰度饱和。更重要的是,可行点的GW光谱通常可以在未来GW实验范围内,例如Lisa,Defigo和Bbo。

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