Scalar-gauge dynamics in (2+1) dimensions at small and large scalar couplings
arXiv:hep-lat/9709145 · doi:10.1016/S0550-3213(98)00330-7
Abstract
We present the results of a detailed calculation of the excitation spectrum of states with quantum numbers J^{PC}=0++, 1-- and 2++ in the three-dimensional SU(2) Higgs model at two values of the scalar self-coupling and for fixed gauge coupling. In the context of studies of the electroweak phase transition at finite temperature these couplings correpond to tree-level, zero temperature Higgs masses of 35 GeV and 120 GeV, respectively. We also study the properties of Polyakov loop operators, which serve to test the confining properties of the model in the symmetric phase. At both values of the scalar coupling we obtain masses of bound states consisting entirely of gauge degrees of freedom ("W-balls"), which are very close to those obtained in the pure gauge theory. We conclude that the previously observed, approximate decoupling of the scalar and gauge sectors of the theory persists at large scalar couplings. We study the crossover region at large scalar coupling and present a scenario how the confining properties of the model in the symmetric phase are lost inside the crossover by means of flux tube decay. We conclude that the underlying dynamics responsible for the observed dense spectrum of states in the Higgs region at large couplings must be different from that in the symmetric phase.
36 pages, LaTeX, 13 postscript files, to be included with epsf; improved presentation, updated references, conclusions unchanged; version to appear in Nucl. Phys. B
References in corpus (4)
Cited by in corpus (28)
- Non-Perturbative Renormalization Flow in Quantum Field Theory and Statistical Physics
- SU(N) gauge theories in 2+1 dimensions
- Static correlation lengths in QCD at high temperatures and finite densities
- The MSSM Electroweak Phase Transition on the Lattice
- String Breaking in Non-Abelian Gauge Theories with Fundamental Matter Fields
- Center Vortex Model for the Infrared Sector of SU(3) Yang-Mills Theory - Confinement and Deconfinement
- Center vortex model for the infrared sector of Yang-Mills theory - Confinement and Deconfinement
- Brout-Englert-Higgs physics: From foundations to phenomenology
- String breaking in SU(2) gauge theory with scalar matter fields
- The spectrum of the three-dimensional adjoint Higgs model and hot SU(2) gauge theory
- Testing imaginary vs. real chemical potential in finite-temperature QCD
- On the non-perturbative gluon mass and heavy quark physics
- String Breaking in SU(2) Yang Mills Theory with Adjoint Sources
- Two-loop dimensional reduction and effective potential without temperature expansions
- Screening Masses in SU(2) Pure Gauge Theory
- The renormalized gauge coupling and non-perturbative tests of dimensional reduction
- Exploratory study of the off-shell properties of the weak vector bosons
- Higgs and W boson spectrum from lattice simulations
- The unreasonable effectiveness of effective string theory: the case of the 3d SU(2) Higgs model
- Spontaneous symmetry breaking in a two-doublet lattice Higgs model
- Five-Dimensional Gauge-Higgs Unification: A Standard Model-Like Spectrum
- Phase structure and the gluon propagator of SU(2) gauge-Higgs model in two dimensions
- Connection between Chiral Symmetry Restoration and Deconfinement
- Static correlation lengths in QCD at high temperature and finite density
- Complete leading-order standard model corrections to quantum leptogenesis
- The static potential beyond screening in the 3d SU(2) Higgs model
- Static potential in the SU(2) Higgs model
- Sphaleron rate at high temperature in 1+1 dimensions