We study the two-dimensional lattice multicomponent Abelian-Higgs model, which is a lattice compact U(1) gauge theory coupled with an N-component complex scalar field, characterized by a global SU(N) symmetry. In agreement with the Mermin-Wagner theorem, the model has only a disordered phase at finite temperature, and a critical behavior is observed only in the zero-temperature limit. The universal features are investigated by numerical analyses of the finite-size scaling behavior in the zero-temperature limit. The results show that the renormalization-group flow of the 2D lattice N-component Abelian-Higgs model is asymptotically controlled by the infinite gauge-coupling fixed point, associated with the universality class of the 2D CPN-1 fi...
We investigate the phase diagram and the nature of the phase transitions of three-dimensional lattic...
We study the effects of gauge-symmetry breaking (GSB) perturbations in three-dimensional lattice gau...
We consider three-dimensional lattice SU(Nc) gauge theories with degenerate multicomponent (Nf>1)...
We study the two-dimensional lattice multicomponent Abelian-Higgs model, which is a lattice compact ...
We investigate the phase diagram and critical behavior of three-dimensional multicomponent Abelian-H...
We investigate under which conditions the three-dimensional (3D) multicomponent Abelian-Higgs (AH) f...
We study the phase diagram and critical behaviour of 2-component three dimensional lattice compact A...
We address the interplay between global and local gauge non-Abelian symmetries in lattice gauge theo...
We study the role that global and local non-Abelian symmetries play in two-dimensional (2D) lattice ...
We consider three-dimensional higher-charge multicomponent lattice Abelian-Higgs (AH) models, in whi...
We consider a noncompact lattice formulation of the three-dimensional electrodynamics with N-compone...
We consider two-dimensional lattice SU(Nc) gauge theories with Nf real scalar fields transforming in...
We address the interplay between local and global symmetries by analyzing the continuum limit of two...
We consider a three-dimensional lattice CPN-1 model, which corresponds to the lattice Abelian-Higgs ...
We investigate the phase diagram and the nature of the phase transitions of three-dimensional lattic...
We study the effects of gauge-symmetry breaking (GSB) perturbations in three-dimensional lattice gau...
We consider three-dimensional lattice SU(Nc) gauge theories with degenerate multicomponent (Nf>1)...
We study the two-dimensional lattice multicomponent Abelian-Higgs model, which is a lattice compact ...
We investigate the phase diagram and critical behavior of three-dimensional multicomponent Abelian-H...
We investigate under which conditions the three-dimensional (3D) multicomponent Abelian-Higgs (AH) f...
We study the phase diagram and critical behaviour of 2-component three dimensional lattice compact A...
We address the interplay between global and local gauge non-Abelian symmetries in lattice gauge theo...
We study the role that global and local non-Abelian symmetries play in two-dimensional (2D) lattice ...
We consider three-dimensional higher-charge multicomponent lattice Abelian-Higgs (AH) models, in whi...
We consider a noncompact lattice formulation of the three-dimensional electrodynamics with N-compone...
We consider two-dimensional lattice SU(Nc) gauge theories with Nf real scalar fields transforming in...
We address the interplay between local and global symmetries by analyzing the continuum limit of two...
We consider a three-dimensional lattice CPN-1 model, which corresponds to the lattice Abelian-Higgs ...
We investigate the phase diagram and the nature of the phase transitions of three-dimensional lattic...
We study the effects of gauge-symmetry breaking (GSB) perturbations in three-dimensional lattice gau...
We consider three-dimensional lattice SU(Nc) gauge theories with degenerate multicomponent (Nf>1)...