Scaling and super-universality in the coarsening dynamics of the 3d random field Ising model
arXiv:0803.0664 · doi:10.1088/1742-5468/2008/05/P05016
Abstract
We study the coarsening dynamics of the three-dimensional random field Ising model using Monte Carlo numerical simulations. We test the dynamic scaling and super-scaling properties of global and local two-time observables. We treat in parallel the three-dimensional Edward-Anderson spin-glass and we recall results on Lennard-Jones mixtures and colloidal suspensions to highlight the common and different out of equilibrium properties of these glassy systems.
18 pages, 21 figures
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- Coarsening and percolation in a disordered ferromagnet
- Aging processes in systems with anomalous slow dynamics
- Phase ordering in disordered and inhomogeneous systems
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- Spin-glass dynamics: experiment, theory and simulation
- From particles to spins: Eulerian formulation of supercooled liquids and glasses
- Relaxation processes in a system with logarithmic growth
- Equilibrium structure and off-equilibrium kinetics of a magnet with tunable frustration
- Domain Growth in Long-range Ising Models with Disorder
- Effect of Annealed Disorder on Phase Separation Kinetics and Aging Phenomena in Fluid Mixtures