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Baryogenesis in the two doublet and inert singlet extension of the Standard Model

机译:标准模型的两个双峰和惰性单峰扩展中的重生

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We investigate an extension of the Standard Model containing two Higgs doublets and a singlet scalar field (2HDSM). We show that the model can have a strongly first-order phase transition and give rise to the observed baryon asymmetry of the Universe, consistent with all experimental constraints. In particular, the constraints from the electron and neutron electric dipole moments are less constraining here than in pure two-Higgs-doublet model (2HDM). The two-step, first-order transition in 2HDSM, induced by the singlet field, may lead to strong supercooling and low nucleation temperatures in comparison with the critical temperature, TTn TTc, which can significantly alter the usual phase-transition pattern in 2HD models with T-n approximate to T-c. Furthermore, the singlet field can be the dark matter particle. However, in models with a strong first-order transition its abundance is typically but a thousandth of the observed dark matter abundance.
机译:我们研究了标准模型的扩展,该模型包含两个希格斯双峰和一个单峰标量场(2HDSM)。我们表明,该模型可以具有强烈的一阶相变,并引起与所有实验约束一致的宇宙观测重子不对称性。特别是,这里的电子和中子电偶极矩的约束要比纯两希格斯-双重峰模型(2HDM)约束少。与临界温度TTn TTc相比,由单重态场引起的2HDSM中的两步,一阶跃迁可能导致强的过冷和低的成核温度,这可以显着改变晶界中通常的相变模式。 Tn接近2T的2HD模型。此外,单重态场可以是暗物质粒子。但是,在具有强一阶跃迁的模型中,其丰度通常仅为观察到的暗物质丰度的千分之一。

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