English

Spin-ladders with spin gaps: A description of a class of cuprates

Condensed Matter 2009-10-22 v1

Abstract

We investigate the magnetic properties of the Cu-O planes in stoichiometric Srn1_{n-1}Cun+1_{n+1}O2n_{2n} (n=3,5,7,...) which consist of CuO double chains periodically intergrown within the CuO2_2 planes. The double chains break up the two-dimensional antiferromagnetic planes into Heisenberg spin ladders with nr=12(n1)n_r=\frac{1}{2}(n-1) rungs and nl=12(n+1)n_l=\frac{1}{2}(n+1) legs and described by the usual antiferromagnetic coupling J inside each ladder and a weak and frustrated interladder coupling J^\prime. The resulting lattice is a new two-dimensional trellis lattice. We first examine the spin excitation spectra of isolated quasi one dimensional Heisenberg ladders which exhibit a gapless spectra when nrn_r is even and nln_l is odd ( corresponding to n=5,9,...) and a gapped spectra when nrn_r is odd and nln_l is even (corresponding to n=3,7,...). We use the bond operator representation of quantum S=12S=\frac{1}{2} spins in a mean field treatment with self-energy corrections and obtain a spin gap of 12J\approx \frac{1}{2} J for the simplest single rung ladder (n=3), in agreement with numerical estimates.

Keywords

Cite

@article{arxiv.cond-mat/9312026,
  title  = {Spin-ladders with spin gaps: A description of a class of cuprates},
  author = {Sudha Gopalan and T. M. Rice and M. Sigrist},
  journal= {arXiv preprint arXiv:cond-mat/9312026},
  year   = {2009}
}

Comments

21 pages, 5 figures upon request, REVTEX, ETH-TH/93-39