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Exact relation of lattice and continuum parameters in three-dimensional SU(2)+Higgs theories

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arxiv hep-lat/9504001 v1 pith:PLYIZRNU submitted 1995-04-05 hep-lat

classification hep-lat
keywords theorythree-dimensionalexacthiggslatticeadjointcalculatecontained
verification ladder T0 review T1 audit T2 compute T3 formal

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The essential features of the high-temperature electroweak phase transition are contained in a three-dimensional super-renormalizable effective field theory. We calculate the exact counterterms needed for lattice simulations of the SU(2)-part of this theory. Scalar fields in both fundamental and adjoint representations are included. The three-dimensional U(1)+Higgs theory is also discussed.

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Cited by 6 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Cosmological phase transitions without high-temperature expansions

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  3. Phase Transitions in Dimensional Reduction up to Three Loops

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    In a toy complex-scalar model, 1-loop dimension-6 matching corrections compete with 2-loop quartic corrections and dominate 3-loop thermal-mass corrections for strong phase transitions.

  4. Hard thermal contributions to phase transition observables at NNLO

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    Three-loop thermal masses and two-loop quartic couplings complete the O(g^6) high-temperature EFT of U(1) and SU(N) gauge-Higgs models, with a missing contribution identified in a known three-loop master integral.

  5. Thermal Resummation for Very Strong First-order Phase Transitions

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    A 2PI-based real-time resummation yields an NLO Abelian-Higgs effective potential for strong phase transitions that passes the leading-order Nielsen gauge-independence test.

  6. Constraining the real scalar singlet extension of the SM

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    Real scalar singlet extension of SM permits strong first-order EWPT for singlet masses up to ~1 TeV; HL-LHC tests large fraction of space while FCC offers discovery reach.

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