English

DMRG studies on linear-exchange quantum spin models in one dimension

Strongly Correlated Electrons 2013-03-04 v1

Abstract

We study a class of spin-1/2 quantum antiferromagnetic chains using DMRG technique. The exchange interaction in these models decreases linearly as a function of the separation between the spins, Jij=RijJ_{ij} = R-|i-j| for ijR|i-j| \le R. For the separations beyond RR, the interaction is zero. The range parameter RR takes positive integer values. The models corresponding to all the odd values of RR are known to have the same exact doubly degenerate dimer ground state as for the Majumdar-Ghosh (MG) model. In fact, R=3 is the MG model. For even RR, the exact ground state is not known in general, except for R=2 (the Bethe ansatz solvable Heisenberg chain) and in the asymptotic limit of RR where the two MG dimer states again emerge as the exact ground state. In the present work, we numerically investigate the even-RR models whose ground state is not known analytically. In particular, for R=4, 6 and 8, we have computed a number of ground state properties. We find that, unlike R=2, the higher even-RR models are spin-gapped, and show strong dimer-dimer correlations of the MG type. Moreover, the spin-spin correlations decay very rapidly, albeit showing weak periodic revivals.

Keywords

Cite

@article{arxiv.1207.0636,
  title  = {DMRG studies on linear-exchange quantum spin models in one dimension},
  author = {Bimla Danu and Brijesh Kumar and Ramesh V. Pai},
  journal= {arXiv preprint arXiv:1207.0636},
  year   = {2013}
}

Comments

8 pages, 12 figures

R2 v1 2026-06-21T21:29:39.771Z