activity
20042008
most citedNonequilibrium spin glass dynamics from picoseconds to 0.1 seconds

97 citations · 115 across the 4 of their papers we have counts for

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10 papers · 1 filter

cond-mat.dis-nn200985 cited

Phase transition in the three dimensional Heisenberg spin glass: Finite-size scaling analysis

L. A. Fernandez, V. Martin-Mayor, S. Perez-Gaviro +2

We have investigated the phase transition in the Heisenberg spin glass using massive numerical simulations to study larger sizes, 48x48x48, than have been attempted before at a spi…

cond-mat.dis-nn200817 cited

The Spin Glass Phase in the Four-State, Three-Dimensional Potts Model

A. Cruz, L. A. Fernandez, A. Gordillo-Guerrero +17

We perform numerical simulations, including parallel tempering, on the Potts glass model with binary random quenched couplings using the JANUS application-oriented computer. We fin…

cond-mat.dis-nn200899 cited

An in-depth view of the microscopic dynamics of Ising spin glasses at fixed temperature

Janus Collaboration, F. Belletti, A. Cruz +18

Using the dedicated computer Janus, we follow the nonequilibrium dynamics of the Ising spin glass in three dimensions for eleven orders of magnitude. The use of integral estimators…

cond-mat.dis-nn200897 cited

Nonequilibrium spin glass dynamics from picoseconds to 0.1 seconds

F. Belletti, M. Cotallo, A. Cruz +18

We study numerically the nonequilibrium dynamics of the Ising Spin Glass, for a time that spans eleven orders of magnitude, thus approaching the experimentally relevant scale (i.e.…

cond-mat.dis-nn200713 cited

Critical properties of the four-state Commutative Random Permutation Glassy Potts model in three and four dimensions

L. A. Fernandez, A. Maiorano, E. Marinari +5

We investigate the critical properties of the four-state commutative random permutation glassy Potts model in three and four dimensions by means of Monte Carlo simulation and of a…

cond-mat.dis-nn200766 cited

Simulating spin systems on IANUS, an FPGA-based computer

F. Belletti, M. Cotallo, A. Cruz +15

We describe the hardwired implementation of algorithms for Monte Carlo simulations of a large class of spin models. We have implemented these algorithms as VHDL codes and we have m…