Dynamical Critical Phenomena in three-dimensional Heisenberg Spin Glasses
Abstract
Spin-glass (SG) and chiral-glass (CG) orderings in three dimensional (3D) Heisenberg spin glass with and without magnetic anisotropy are studied by using large-scale off-equilibrium Monte Carlo simulations. A characteristic time of relaxation, which diverges at a transition temperature in the thermodynamic limit, is obtained as a function of the temperature and the system size. Based on the finite-size scaling analysis for the relaxation time, it is found that in the isotropic Heisenberg spin glass, the CG phase transition occurs at a finite temperature, while the SG transition occurs at a lower temperature, which is compatible with zero. Our results of the anisotropic case support the chirality scenario for the phase transitions in the 3D Heisenberg spin glasses.
Cite
@article{arxiv.cond-mat/0204225,
title = {Dynamical Critical Phenomena in three-dimensional Heisenberg Spin Glasses},
author = {Mitsuhiro Matsumoto and Koji Hukushima and Hajime Takayama},
journal= {arXiv preprint arXiv:cond-mat/0204225},
year = {2016}
}
Comments
9 pages, 19 figures