String Tension Scaling in High-Temperature Confined SU(N) Gauge Theories
arXiv:0905.3577 · doi:10.1103/PhysRevD.81.025012
Abstract
SU(N) gauge theories, extended with adjoint fermions having periodic boundary conditions, are confining at high temperature for sufficiently light fermion mass . In the high temperature confining region, the one-loop effective potential for Polyakov loops has a Z(N)-symmetric confining minimum. String tensions associated with Polyakov loops are calculable in perturbation theory, and display a novel scaling behavior in which higher representations have smaller string tensions than the fundamental representation. In the magnetic sector, the Polyakov loop plays a role similar to a Higgs field, leading to an apparent breaking of SU(N) to . This is turn yields a dual effective theory where magnetic monopoles give rise to string tensions for spatial Wilson loops. The spatial string tensions are calculable semiclassically from kink solutions of the dual system. We show that the spatial string tensions associated with each -ality obey a variant of Casimir scaling . Although lattice simulations indicate that the high temperature confining region is smoothly connected to the confining region of low-temperature pure SU(N) gauge theory, the electric and magnetic string tension scaling laws are different and readily distinguishable.
11 pages, 1 figure
References in corpus (7)
- Center-stabilized Yang-Mills theory: confinement and large volume independence
- Magnetic bion condensation: A new mechanism of confinement and mass gap in four dimensions
- Abelian duality, confinement, and chiral symmetry breaking in QCD(adj)
- Finite size phase transitions in QCD with adjoint fermions
- New Phases of SU(3) and SU(4) at Finite Temperature
- Phase diagrams of SU(N) gauge theories with fermions in various representations
- Finite temperature SU(2) gauge theory: critical coupling and universality class
Cited by in corpus (22)
- Conformality or confinement: (IR)relevance of topological excitations
- How Wide is the Transition to Deconfinement?
- Neutral bions in the model
- Adjoint QCD on with twisted fermionic boundary conditions
- Classifying bions in Grassmann sigma models and non-Abelian gauge theories by D-branes
- Conformality or confinement (II): One-flavor CFTs and mixed-representation QCD
- Fractional instantons and bions in the O(N) model with twisted boundary conditions
- Pion transition form factor at the two-loop level vis-à-vis experimental data
- dependence in trace deformed Yang-Mills theory: a lattice study
- Realization of Center Symmetry in Two Adjoint Flavor Large-N Yang-Mills
- Deconfinement in Yang-Mills theory through toroidal compactification with deformation
- -dependence and center symmetry in Yang-Mills theories
- Phases of Gauge Theories
- AdS/CFT and large-N volume independence
- Confinement in a Higgs Model on
- QCD in magnetic field, Landau levels and double-life of unbroken center-symmetry
- Spectrum of Trace Deformed Yang-Mills Theories
- Phases of circle-compactified QCD with adjoint fermions at finite density
- Quark Confinement and the Renormalization Group
- Two-loop contribution to the pion transition form factor vs. experimental data
- Confinement on : continuum and lattice
- PNJL model for adjoint fermions