Magnetic phase diagrams of classical triangular and kagome antiferromagnets
arXiv:1012.0656 · doi:10.1088/0953-8984/23/16/164209
Abstract
We investigate the effect of geometrical frustration on the -- phase diagrams of the classical Heisenberg antiferromagnets on triangular and kagome lattices. The phase diagrams for the two models are obtained from large scale Monte Carlo simulations. For the kagome antiferromagnet thermal fluctuations are unable to lift completely degeneracy and stabilize translationally disordered multipolar phases. We find a substantial difference in the temperature scales of the order by disorder effect related to different degeneracy of the low- and the high-field classical ground states in the kagome antiferromagnet. In the low-field regime, the Kosterlitz-Thouless transition into a spin-nematic phase is produced by unbinding of half-quantum vortices.
11 pages, 7 figures
References in corpus (6)
- Order by disorder and spiral spin liquid in frustrated diamond lattice antiferromagnets
- Octupolar ordering of classical kagome antiferromagnets in two and three dimensions
- Classical dimers with aligning interactions on the square lattice
- Magnetic phase diagram, critical behaviour and 2D-3D crossover in a triangular lattice antiferromagnet RbFe(MoO4)2
- Bond order from disorder in the planar pyrochlore magnet
- Monte Carlo study of first-order transition in Heisenberg fcc antiferromagnet