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Cold Baryogenesis from first principles in the Two-Higgs Doublet model with Fermions

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arxiv 1505.02692 v2 pith:H3PE4E5V submitted 2015-05-11 hep-ph hep-lathep-th

classification hep-phhep-lathep-th
keywords asymmetrybaryogenesistwo-higgsbaryonbreakingcoldcomputerdoublet
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We present a first-principles numerical computation of the baryon asymmetry in electroweak-scale baryogenesis. For the scenario of Cold Baryogenesis, we consider a one fermion-family reduced CP-violating two Higgs-doublet model, including a classical SU(2)-gauge/two-Higgs sector coupled to one quantum left-handed fermion doublet and two right-handed singlets. Separately, the C(CP) breaking of the two-Higgs potential and the C and P breaking of the gauge-fermion interactions do not provide a baryon asymmetry. Only when combined does baryogenesis occur. Through large-scale computer simulations, we compute the asymmetry for one particularly favourable scalar potential. The numerical signal is at the boundary of what is numerically discernible with the available computer resources, but we tentatively find an asymmetry of $|\eta|\leq 3.5\times 10^{-7}$.

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    A generalized-thimble evaluation of the closed-time path integral reproduces Schrödinger-equation tunnelling dynamics in a double well, while the classical-statistical approximation deviates.

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