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Inverse Symmetry Breaking with 4d Lattice Simulations

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arxiv hep-lat/9805024 v1 pith:IJCRHG3N submitted 1998-05-26 hep-lat hep-ph

classification hep-lathep-ph
keywords latticesymmetrytheorybeenbreakinghighinverseperturbation
verification ladder T0 review T1 audit T2 compute T3 formal
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According to resummed perturbation theory, certain scalar theories have a global symmetry, which is restored in the vacuum but is broken at high temperatures. Recently, this phenomenon has been studied with 4d finite temperature lattice simulations, and it has been suggested that the non-perturbative dynamics thus incorporated would hinder the transition. We have carried out another lattice study, for a theory with very small coupling constants. We find perfect compatibility with next-to-leading order resummed perturbation theory, and demonstrate that ``inverse'' symmetry breaking can indeed take place at high temperatures.

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    A non-equilibrated scalar controlling a quartic coupling makes the coupling smaller at high temperature, strengthening the first-order dark Higgs phase transition.

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