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Thermal phase transition with full 2-loop effective potential

机译:具有完整2回路有效电势的热相变

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Theories with extended Higgs sectors constructed in view of cosmological ramifications (gravitational wave signal, baryogenesis, dark matter) are often faced with conflicting requirements for their couplings; in particular those influencing the strength of a phase transition may be large. Large couplings compromise perturbative studies, as well as the high-temperature expansion that is invoked in dimensionally reduced lattice investigations. With the example of the inert doublet extension of the Standard Model (IDM), we show how a resummed 2-loop effective potential can be computed without a high- T expansion, and use the result to scrutinize its accuracy. With the exception of T c , which is sensitive to contributions from heavy modes, the high- T expansion is found to perform well. 2-loop corrections weaken the transition in IDM, but they are moderate, whereby a strong transition remains an option.
机译:考虑到宇宙学后果(引力波信号,重生,暗物质)而构造的具有希格斯扇形扩展的理论常常面临着相互耦合的矛盾要求。特别是那些影响相变强度的因素可能很大。大型联轴器会扰动扰动研究,以及在尺寸减小的晶格研究中调用的高温膨胀。以标准模型(IDM)的惰性二重态扩展为例,我们展示了如何在不进行高T扩展的情况下计算恢复的2环有效电势,并使用结果来检查其准确性。除了T c,它对重模的贡献很敏感,高T扩展表现良好。 2环校正会削弱IDM的过渡,但它们是适度的,因此仍然可以选择强过渡。

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