English

Investigation of frustrated and dimerized classical Heisenberg chains

Strongly Correlated Electrons 2015-01-26 v5

Abstract

We have considered the 1D dimerized frustrated antiferromagnetic (ferromagnetic) Heisenberg model with arbitrary spin SS. The exact classical magnetic phase diagram at zero temperature is determined using the LK cluster method. Cluster method results, show that the classical ground state phase diagram of the model is very rich including first and second-order phase transitions. In the absence of the dimerization, a second-order phase transition occurs between antiferromagnetic (ferromagnetic) and spiral phases at the critical frustration αc=±0.25\alpha_c=\pm 0.25. In the vicinity of the critical points αc\alpha_c, the exact classical critical exponent of the spiral order parameter is found 1/2. In the case of dimerized chain (δ0\delta\neq0), the spiral order shows stability and exists in some part of the ground state phase diagram. We have found two first-order critical lines in the ground state phase diagram. These critical lines separate the antiferromagnetic from spiral phase.

Keywords

Cite

@article{arxiv.1204.1593,
  title  = {Investigation of frustrated and dimerized classical Heisenberg chains},
  author = {J. Vahedi and S. Mahdavifar and M. R. Soltani and M. Elahi},
  journal= {arXiv preprint arXiv:1204.1593},
  year   = {2015}
}

Comments

6 pages, 6 figures