We present a massive equilibrium simulation of the three-dimensional Ising spin glass at low temperatures. The Janus special-purpose computer has allowed us to equilibrate, using parallel tempering, L = 32 lattices down to T approximate to 0.64T(c). We demonstrate the relevance of equilibrium finite size simulations to understanding experimental non-equilibrium spin glasses in the thermodynamical limit by establishing a time-length dictionary. We conclude that non-equilibrium experiments performed on a timescale of 1 h can be matched with equilibrium results on L approximate to 110 lattices. A detailed investigation of the probability distribution functions of the spin and link overlap, as well as of their correlation functions, shows that ...
Use of dedicated computers in spin glass simulations allows one to equilibrate very large samples (o...
We have performed a very accurate computation of the nonequilibrium fluctuation-dissipation ratio fo...
It is shown, by means of Monte Carlo simulation and finite size scaling analysis, that the Heisenber...
We present a massive equilibrium simulation of the three-dimensional Ising spin glass at low tempera...
We present a massive equilibrium simulation of the three-dimensional Ising spin glass at low tempera...
We discuss the slow, nonequilibrium, dynamics of spin glasses in their glassy phase. We briefly revi...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
Abstract. We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spi...
In order to overcome the limitations of small system sizes in spin-glass simulations, we investigate...
We have simulated, using parallel tempering, the three-dimensional Ising spin glass model with binar...
Use of dedicated computers in spin glass simulations allows one to equilibrate very large samples (o...
We have performed a very accurate computation of the nonequilibrium fluctuation-dissipation ratio fo...
It is shown, by means of Monte Carlo simulation and finite size scaling analysis, that the Heisenber...
We present a massive equilibrium simulation of the three-dimensional Ising spin glass at low tempera...
We present a massive equilibrium simulation of the three-dimensional Ising spin glass at low tempera...
We discuss the slow, nonequilibrium, dynamics of spin glasses in their glassy phase. We briefly revi...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in...
Abstract. We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spi...
In order to overcome the limitations of small system sizes in spin-glass simulations, we investigate...
We have simulated, using parallel tempering, the three-dimensional Ising spin glass model with binar...
Use of dedicated computers in spin glass simulations allows one to equilibrate very large samples (o...
We have performed a very accurate computation of the nonequilibrium fluctuation-dissipation ratio fo...
It is shown, by means of Monte Carlo simulation and finite size scaling analysis, that the Heisenber...