Study of the phase transition in the 3d Ising spin glass from out of equilibrium numerical simulations
arXiv:cond-mat/0603266 · doi:10.1088/0305-4470/39/27/001
Abstract
Using the decay of the out equilibrium spin-spin correlation function we compute the equilibrium Edward-Anderson order parameter in the three dimensional binary Ising spin glass in the spin glass phase. We have checked that the Edward-Anderson order parameter computed from out of equilibrium numerical simulations follows with good precision the critical law as determined in experiments and in numerical studies at equilibrium. We have also studied the dependence of the order parameter with the lattice size. Finally we present a large time study of the scaling of the off-equilibrium fluctuation-dissipation relations.
14 pages, 7 Postscript figures
References in corpus (1)
Cited by in corpus (4)
- The critical behavior of three-dimensional Ising spin glass models
- An in-depth view of the microscopic dynamics of Ising spin glasses at fixed temperature
- Nonequilibrium spin glass dynamics from picoseconds to 0.1 seconds
- The critical behavior of 3D Ising glass models: universality and scaling corrections