We use finite size scaling to study Ising spin glasses in two spatial dimensions. The issue of universality is addressed by comparing discrete and continuous probability distributions for the quenched random couplings. The sophisticated temperature dependency of the scaling fields is identified as the major obstacle that has impeded a complete analysis. Once temperature is relinquished in favor of the correlation length as the basic variable, we obtain a reliable estimation of the anomalous dimension and of the thermal critical exponent. Universality among binary and Gaussian couplings is confirmed to a high numerical accuracy
We have simulated, using parallel tempering, the three-dimensional Ising spin glass model with binar...
We perform high-statistics Monte Carlo simulations of three three-dimensional Ising spin-glass mode...
v2=final version, 19 pages, 8 figuresInternational audienceFor the Ising model with Gaussian random ...
We use finite size scaling to study Ising spin glasses in two spatial dimensions. The issue of unive...
We use finite size scaling to study Ising spin glasses in two spatial dimensions. The issue of unive...
Journals published by the American Physical Society can be found at http://journals.aps.org/Using la...
Using the results of large scale numerical simulations we study the probability distribution of the ...
We report a high-precision finite-size scaling study of the critical behavior of the three-dimension...
We study the finite-size behavior of two-dimensional spin-glass models. We consider the +-J model f...
Recently extended precise numerical methods and droplet scaling arguments allow for a coherent pictu...
We study the finite-size behavior of two-dimensional spin-glass models. We consider the +/- J model ...
The critical exponents for T -> 0 of the two-dimensional Ising spin glass model with Gaussian coupli...
We use a nonequilibrium Monte Carlo simulation method and dynamical scaling to study the phase trans...
At zero temperature, two-dimensional Ising spin glasses are known to fall into several universality ...
Abstract. We perform high-statistics Monte Carlo simulations of three three- dimensional Ising spin ...
We have simulated, using parallel tempering, the three-dimensional Ising spin glass model with binar...
We perform high-statistics Monte Carlo simulations of three three-dimensional Ising spin-glass mode...
v2=final version, 19 pages, 8 figuresInternational audienceFor the Ising model with Gaussian random ...
We use finite size scaling to study Ising spin glasses in two spatial dimensions. The issue of unive...
We use finite size scaling to study Ising spin glasses in two spatial dimensions. The issue of unive...
Journals published by the American Physical Society can be found at http://journals.aps.org/Using la...
Using the results of large scale numerical simulations we study the probability distribution of the ...
We report a high-precision finite-size scaling study of the critical behavior of the three-dimension...
We study the finite-size behavior of two-dimensional spin-glass models. We consider the +-J model f...
Recently extended precise numerical methods and droplet scaling arguments allow for a coherent pictu...
We study the finite-size behavior of two-dimensional spin-glass models. We consider the +/- J model ...
The critical exponents for T -> 0 of the two-dimensional Ising spin glass model with Gaussian coupli...
We use a nonequilibrium Monte Carlo simulation method and dynamical scaling to study the phase trans...
At zero temperature, two-dimensional Ising spin glasses are known to fall into several universality ...
Abstract. We perform high-statistics Monte Carlo simulations of three three- dimensional Ising spin ...
We have simulated, using parallel tempering, the three-dimensional Ising spin glass model with binar...
We perform high-statistics Monte Carlo simulations of three three-dimensional Ising spin-glass mode...
v2=final version, 19 pages, 8 figuresInternational audienceFor the Ising model with Gaussian random ...