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Cosmological phase transitions: is effective field theory just a toy?

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arxiv 2012.03953 v1 pith:NWZFG2WI submitted 2020-12-07 hep-ph

Cosmological phase transitions: is effective field theory just a toy?

classification hep-ph
keywords phasetransitionsdescriptioneffectivefieldfirstorderphysics
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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To obtain a first order phase transition requires large new physics corrections to the Standard Model (SM) Higgs potential. This implies that the scale of new physics is relatively low, raising the question whether an effective field theory (EFT) description can be used to analyse the phase transition in a (nearly) model-independent way. We show analytically and numerically that first order phase transitions in perturbative extensions of the SM cannot be described by the SM-EFT. The exception are Higgs-singlet extension with tree-level matching; but even in this case the SM-EFT can only capture part of the full parameter space, and if truncated at dim-6 operators, the description is at most qualitative. We also comment on the applicability of EFT techniques to dark sector phase transitions.

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Cited by 2 Pith papers

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    hep-ph 2026-03 unverdicted novelty 5.0

    A dimension-six operator |H|^2|phi|^4 in a U(1)_D singlet extension relaxes the usual Higgs-portal and mixing-angle correlation, enabling strong first-order electroweak phase transitions driven primarily by the singlet VEV.