Spin and chirality orderings of the one-dimensional Heisenberg spin glass with the long-range power-law interaction
arXiv:cond-mat/0609654 · doi:10.1088/0953-8984/19/14/145220
Abstract
The ordering of the one-dimensional Heisenberg spin glass interacting via the long-range power-law interaction is studied by Monte Carlo simulations. Particular attention is paid to the possible occurrence of the ``spin-chirality decoupling'' for appropriate values of the power-law exponent σ. Our result suggests that, for intermediate values of , the chiral-glass order occurs at finite temperatures while the standard spin-glass order occurs only at zero temperature.
Proceedings of the Highly Frustrated Magnetism (HFM2006) conference. To appear in a special issue of J. Phys. Condens. Matter
References in corpus (6)
- Monte Carlo studies of the one-dimensional Ising spin glass with power-law interactions
- Nature of the phase transition of the three-dimensional isotropic Heisenberg spin glass
- Aging Dynamics of the Heisenberg Spin Glass
- Dynamical AC study of the critical behavior in Heisenberg spin glasses
- Ordering of the Heisenberg spin glass in two dimensions
- Three Dimensional Heisenberg Spin Glass Models with and without Random Anisotropy