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- W2012400002 abstract "The Standard Model of electroweak interactions has a line of first order phase transition in the plane (higgs mass, temperature) that ends in a critical point belonging to the 3D Ising model universality class [K. Rummukainenet al, hep-lat/9805013. Similar critical points are found in finite-temperature QCD [M. Stephanovet al, hep-ph/9806219; F. Karschet al, hep-lat/0107020. When these critical points are studied by Monte Carlo simulations on the lattice, one observes certain residual deviations fromZ2 symmetry (which is exact for the Ising model). Here we study whether such deviations can be attributed to asymmetric corrections to scaling, which are relatively poorly studied. We compute the critical exponents in the local potential approximation (LPA), that is, in the framework of the Wegner-Houghton equation. We find that the exponent for the leading antisymmetric correction to scaling is approximately 1.691 in the LPA. This high value implies that such corrections cannot explain observed asymmetries." @default.
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- W2012400002 date "2003-05-01" @default.
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- W2012400002 title "Asymmetric effects at 3D Ising-like critical points" @default.
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- W2012400002 doi "https://doi.org/10.1016/s0920-5632(03)01702-x" @default.
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