Phase diagram of the S=1/2 quantum spin chain with bond alternation
Abstract
We study the ground state properties of the bond alternating quantum spin chain whose Hamiltonian is H=\sum_j (S_{2j}^x S_{2j+1}^x +S_{2j}^y S_{2j+1}^y +\lambda S_{2j}^z S_{2j+1}^z ) +\beta \sum_j {\bf S}_{2j-1} \cdot {\bf S}_{2j} . When , the ground state is a collection of local singlets with a finite excitation gap. In the limit of strong ferromagnetic coupling , this is equivalent to the Hamiltonian. It has several ground state phases in the - plane including the gapful Haldane phase. They are characterized by a full breakdown, partial breakdowns and a non-breakdown of the hidden discrete symmetry. The ground state phase diagram is obtained by series expansions.
Keywords
Cite
@article{arxiv.cond-mat/9303010,
title = {Phase diagram of the S=1/2 quantum spin chain with bond alternation},
author = {M. Yamanaka and Y. Hatsugai and M. Kohmoto},
journal= {arXiv preprint arXiv:cond-mat/9303010},
year = {2009}
}
Comments
25 pages, RevTex 2.0, 9 Figures available on request, Tec.rep. of ISSP No.A2652