69 citations · 208 across the 11 of their papers we have counts for
11 papers
Microcanonical simulated annealing: Massively parallel Monte Carlo simulations with sporadic random-number generation
M. Bernaschi, C. Chilin, L. A. Fernandez +7
Numerical simulations of models and theories that describe complex systems such as spin glasses are becoming increasingly important. Beyond fundamental research, these computationa…
Infinite volume extrapolation in the one-dimensional bond diluted Levy spin-glass model near its lower critical dimension
L. Leuzzi, G. Parisi, F. Ricci-Tersenghi +1
We revisited, by means of numerical simulations, the one dimensional bond diluted Levy Ising spin glasses outside the limit of validity of mean field theories. In these models the…
Explicit generation of the branching tree of states in spin glasses
G. Parisi, F. Ricci-Tersenghi, D. Yllanes
We present a numerical method to generate explicit realizations of the tree of states in mean-field spin glasses. The resulting study illuminates the physical meaning of the full r…
The crossover region between long-range and short-range interactions for the critical exponents
Edouard Brezin, Giorgio Parisi, Federico Ricci-Tersenghi
It is well know that systems with an interaction decaying as a power of the distance may have critical exponents that are different from those of short-range systems. The boundary…
Message passing and Monte Carlo algorithms: connecting fixed points with metastable states
A. Lage-Castellanos, R. Mulet, F. Ricci-Tersenghi
Mean field-like approximations (including naive mean field, Bethe and Kikuchi and more general Cluster Variational Methods) are known to stabilize ordered phases at temperatures hi…
The three dimensional Ising spin glass in an external magnetic field: the role of the silent majority
Janus Collaboration, M. Baity-Jesi, R. A. Banos +22
We perform equilibrium parallel-tempering simulations of the 3D Ising Edwards-Anderson spin glass in a field. A traditional analysis shows no signs of a phase transition. Yet, we e…