English

Critical Behavior of Low Dimensional Magnetic Systems

Computational Physics 2016-04-04 v1 Statistical Mechanics

Abstract

In this study, critical behavior of low dimensional magnetic systems as cyano-bridged Tb(III)-Cr(III) bimetallic assembly was investigated with the mixed spin 33- spin 3/23/2 Ising model. The mixed spin Ising model is simulated with Cellular Automaton cooling and heating algorithms on one-dimensional lattices in periodic boundary conditions. The Ising model Hamiltonian includes only antiferromagnetic nearest-neighbor interaction (% J>0). The mixed spin system behaves like the isolated one-dimensional chain for zero magnetic field (h=HJ=0h=\frac{H}{J}=0). In the presence of the magnetic field, the magnetization is calculated using zero-field cooling (ZFCZFC) and field cooling (FCFC) processes. The one-dimensional Ising model results are compatible with the cyano-bridged Tb(III)-Cr(III) bimetallic quasi-one dimensional assembly [Tb(H_{2}O)_{2}(DMF)_{4}{ Cr(CN)_{6}}].H_{2}O(DMF=dimethylformamide) results.

Keywords

Cite

@article{arxiv.1604.00200,
  title  = {Critical Behavior of Low Dimensional Magnetic Systems},
  author = {Aycan Özkan and Bülent Kutlu},
  journal= {arXiv preprint arXiv:1604.00200},
  year   = {2016}
}

Comments

15 pages, 7 figures