Phase Transition in 3d Heisenberg Spin Glasses with Strong Random Anisotropies, through a Multi-GPU Parallelization
Disordered Systems and Neural Networks
2014-01-22 v2
Abstract
We characterize the phase diagram of anisotropic Heisenberg spin glasses, finding both the spin and the chiral glass transition. We remark the presence of strong finite-size effects on the chiral sector. We find a unique phase transition for the chiral and spin glass sector, in the Universality class of Ising spin glasses. We focus on keeping finite-size effects under control, and we stress that they are important to understand experiments. Thanks to large GPU clusters we have been able to thermalize cubic lattices with up to 64x64x64 spins, over a vast range of temperatures.
Keywords
Cite
@article{arxiv.1309.1599,
title = {Phase Transition in 3d Heisenberg Spin Glasses with Strong Random Anisotropies, through a Multi-GPU Parallelization},
author = {M. Baity-Jesi and L. A. Fernandez and V. Martin-Mayor and J. M. Sanz},
journal= {arXiv preprint arXiv:1309.1599},
year = {2014}
}
Comments
12 pages, 6 figures. New simulations added for L=64, D=1 (results unchanged)