Thermodynamic properties of tetrameric bond-alternating spin chains
Abstract
Thermodynamic properties of a tetrameric bond-alternating Heisenberg spin chain with ferromagnetic-ferromagnetic-antiferromagnetic-antiferromagnetic exchange interactions are studied using the transfer-matrix renormalization group and compared to experimental measurements. The temperature dependence of the uniform susceptibility exhibits typical ferrimagnetic features. Both the uniform and staggered magnetic susceptibilities diverge in the limit , indicating that the ground state has both ferromagnetic and antiferromagnetic long-range orders. A double-peak structure appears in the temperature dependence of the specific heat. Our numerical calculation gives a good account for the temperature and field dependence of the susceptibility, the magnetization, and the specific heat for Cu(3-Clpy)(N) (3-Clpy=3-Chloroyridine).
Cite
@article{arxiv.cond-mat/0412275,
title = {Thermodynamic properties of tetrameric bond-alternating spin chains},
author = {H. T. Lu and Y. H. Su and L. Q. Sun and J. Chang and C. S. Liu and H. G. Luo and T. Xiang},
journal= {arXiv preprint arXiv:cond-mat/0412275},
year = {2009}
}
Comments
8 pages, 12 figures; Replaced with final version accepted in Phys. Rev. B