Numerical Study of the Spin-1 Antiferromagnetic Heisenberg Chain with a Spin-1/2 Impurity
Abstract
Low-lying excited states as well as the ground state of the spin-1 antiferromagnetic Heisenberg chain with a spin-1/2 impurity are studied by means of a method of numerical diagonalization. The isotropic nearest-neighbor exchange coupling plus the uniaxial single-ion-type anisotropy energy is assumed for the host-system Hamiltonian. The energy differences between the ground state and the low-lying excited states, which appear in the Haldane gap, are estimated in the thermodynamic limit. The results are used to analyze the electron-spin-resonance experimental data on Ni(CHN)NO(ClO), abbreviated NENP, containing a small amount of spin-1/2 Cu impurities. It is found that in this system, the impurity-host Cu-Ni coupling is ferromagnetic and its magnitude is about 5\% of the magnitude of the host-host Ni-Ni coupling.
Keywords
Cite
@article{arxiv.cond-mat/9508029,
title = {Numerical Study of the Spin-1 Antiferromagnetic Heisenberg Chain with a Spin-1/2 Impurity},
author = {Takashi Tonegawa and Makoto Kaburagi},
journal= {arXiv preprint arXiv:cond-mat/9508029},
year = {2009}
}
Comments
18 pages, plain TeX with 4 tables(gzipped and uuencoded), 9 figures available upon request from [email protected], to be published in J. Phys. Soc. Jpn., Vol.64, No.10 (Oct. 1995)