Multi-overlap simulations of spin glasses

Abstract

We present results of recent high-statistics Monte Carlo simulations of the Edwards-Anderson Ising spin-glass model in three and four dimensions. The study is based on a non-Boltzmann sampling technique, the multi-overlap algorithm which is specifically tailored for sampling rare-event states. We thus concentrate on those properties which are difficult to obtain with standard canonical Boltzmann sampling such as the free-energy barriers FqB in the probability density PJ(q) of the Parisi overlap parameter q and the behaviour of the tails of the disorder averaged density P(q) = [PJ(q)]av.

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