Abstract
We investigate the electroweak phase transition in the real-singlet extension of the Standard Model at two-loop level, building upon existing one-loop studies. We calculate the effective potential in the high-temperature approximation and detail the required resummations at two-loop order. In typical strong-transition scenarios, we find deviations of order 20%-50% from one-loop results in transition strength and critical temperature for both one- and two-step phase transitions. For extremely strong transitions, the discrepancy with one-loop predictions is even larger, presumably due to sizable scalar couplings in the tree-level potential. Along the way, we obtain a dimensionally reduced effective theory applicable for nonperturbative lattice studies of the model.
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CITATION STYLE
Niemi, L., Schicho, P., & Tenkanen, T. V. I. (2021). Singlet-assisted electroweak phase transition at two loops. Physical Review D, 103(11). https://doi.org/10.1103/PhysRevD.103.115035
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