Large-N reduction of SU(N) Yang-Mills theory with massive adjoint overlap fermions
arXiv:1011.2150 · doi:10.1016/j.physletb.2011.03.009
Abstract
We study four dimensional large-N SU(N) Yang-Mills theory coupled to adjoint overlap fermions on a single site lattice. Lattice simulations along with perturbation theory show that the bare quark mass has to be taken to zero as one takes the continuum limit in order to be in the physically relevant center-symmetric phase. But, it seems that it is possible to take the continuum limit with any renormalized quark mass and still be in the center-symmetric physics. We have also conducted a study of the correlations between Polyakov loop operators in different directions and obtained the range for the Wilson mass parameter that enters the overlap Dirac operator.
8 pages, 5 figures
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Cited by in corpus (7)
- SU(N) gauge theories at large N
- Testing volume independence of SU(N) pure gauge theories at large N
- Compactified N=1 supersymmetric Yang-Mills theory on the lattice: Continuity and the disappearance of the deconfinement transition
- Recent results in large-N lattice gauge theories
- Perturbative contributions to Wilson loops in twisted lattice boxes and reduced models
- Flow of Hagedorn singularities and phase transitions in large gauge theories
- Large-N reduction with adjoint Wilson fermions