We study the critical properties of the monopole-percolation transition in U(1) lattice gauge theory coupled to scalars at infinite (β = 0) gauge coupling. We find strong scaling corrections in the critical exponents that must be considered by means of an infinite-volume extrapolation. After the extrapolation, our results are as precise as the obtained for the four dimensional site-percolation and, contrary to previously stated, fully compatible with them
Using finite-size scaling methods we measure the thermal and magnetic exponents of the site percolat...
Using finite-size scaling methods we measure the thermal and magnetic exponents of the site percolat...
Percolation has two mean-field theories, the Gaussian fixed point (GFP) and the Landau mean-field th...
Finite size scaling studies of monopole condensation in noncompact quenched lattice $QED$ indicate a...
We observe the power law scaling behavior of the monopole mass and condensate in the pure compact U(...
We study the interplay between topological observables and chiral and Higgs transitions in lattice s...
Monopole Percolation was first introduced in the study of the non-compact lattice QED in both, the p...
We investigate critical properties of the phase transition in the four-dimensional compact U(1) latt...
The classical cubic dimer model has a columnar ordering transition that is continuous and described ...
We simulate four flavor noncompact lattice QED using the Hybrid Monte Carlo algorithm on $10^4$ and ...
We investigate the phase diagram of the compact U(1) lattice gauge theory in four dimensions using a...
We investigate the phase diagram of the compact U(1) lattice gauge theory in four dimensions using a...
We study the interplay between topological observables and chiral and Higgs transitions in lattice s...
Suppressing monopoles and vortices by introducing large chemical potentials for them in the Wilson a...
In the present paper the phase transition in the regularized U(1) gauge theory is investigated using...
Using finite-size scaling methods we measure the thermal and magnetic exponents of the site percolat...
Using finite-size scaling methods we measure the thermal and magnetic exponents of the site percolat...
Percolation has two mean-field theories, the Gaussian fixed point (GFP) and the Landau mean-field th...
Finite size scaling studies of monopole condensation in noncompact quenched lattice $QED$ indicate a...
We observe the power law scaling behavior of the monopole mass and condensate in the pure compact U(...
We study the interplay between topological observables and chiral and Higgs transitions in lattice s...
Monopole Percolation was first introduced in the study of the non-compact lattice QED in both, the p...
We investigate critical properties of the phase transition in the four-dimensional compact U(1) latt...
The classical cubic dimer model has a columnar ordering transition that is continuous and described ...
We simulate four flavor noncompact lattice QED using the Hybrid Monte Carlo algorithm on $10^4$ and ...
We investigate the phase diagram of the compact U(1) lattice gauge theory in four dimensions using a...
We investigate the phase diagram of the compact U(1) lattice gauge theory in four dimensions using a...
We study the interplay between topological observables and chiral and Higgs transitions in lattice s...
Suppressing monopoles and vortices by introducing large chemical potentials for them in the Wilson a...
In the present paper the phase transition in the regularized U(1) gauge theory is investigated using...
Using finite-size scaling methods we measure the thermal and magnetic exponents of the site percolat...
Using finite-size scaling methods we measure the thermal and magnetic exponents of the site percolat...
Percolation has two mean-field theories, the Gaussian fixed point (GFP) and the Landau mean-field th...