Duals of U(N) LGT with staggered fermions
arXiv:1712.03064 · doi:10.1051/epjconf/201817511021
Abstract
Various approaches to construction of dual formulations of non-abelian lattice gauge theories are reviewed. In the case of U(N) LGT we use a theory of the Weingarten functions to construct a dual formulation. In particular, the dual representations are constructed 1) for pure gauge models in all dimensions, 2) in the strong coupling limit for the models with arbitrary number of flavours and 3) for two-dimensional U(N) QCD with staggered fermions. Applications related to the finite temperature/density QCD are discussed.
8 pages, Proceedings for the 35th International Symposium on Lattice Field Theory (Lattice 2017)
References in corpus (10)
- Flux representation of an effective Polyakov loop model for QCD thermodynamics
- Solving the sign problems of the massless lattice Schwinger model with a dual formulation
- Dual Computations of Non-abelian Yang-Mills on the Lattice
- Lattice gauge theory without link variables
- Abelian color cycles: a new approach to strong coupling expansion and dual representations for non-abelian lattice gauge theory
- Revisiting SU(N) integrals
- Analytic derivation of dual gluons and monopoles from SU(2) lattice Yang-Mills theory. II. Spin foam representation
- Elementary derivation of Weingarten functions of classical Lie groups
- Analytic derivation of dual gluons and monopoles from SU(2) lattice Yang-Mills theory. I. BF Yang-Mills representation
- Analytic derivation of dual gluons and monopoles from SU(2) lattice Yang-Mills theory. III. Plaquette representation
Cited by in corpus (7)
- Dual formulations of Polyakov loop lattice models
- Dual simulation of a Polyakov loop model at finite baryon density: phase diagram and local observables
- Three-quark potentials in an effective Polyakov loop model
- The large N limit of SU(N) integrals in lattice models
- The Polyakov loop models in the large N limit: Phase diagram at finite density
- Duals of lattice Abelian models with static determinant at finite density
- Abelian color cycle and abelian color flux dualization methods for non-abelian lattice field theories