English

Numerical Study of the $S=1$ Antiferrromagnetic Spin Chain with Bond Alternation

Condensed Matter 2016-08-31 v2

Abstract

We study the S=1S=1 quantum spin chain with bond alternation H=i(1(1)iδ)\vectSi\vectSi+1{\cal H}=\sum _i (1-(-1)^i\delta)\vect{S}_i\cdot \vect{S}_{i+1} by the density matrix renormalization group method recently proposed by Steven R. White (\PRL{69}{3844}{1993}). We find a massless point at δc=0.25±0.01\delta _c =0.25 \pm 0.01. We also find the edge states in the region δ<δc\delta <\delta_c under the open boundary condition, which disappear in the region δ>δc\delta >\delta _{c}. At the massless point, the spin wave velocity vsv_s is 3.66±0.103.66 \pm 0.10 and the central charge cc is 1.0±0.151.0\pm 0.15. Our results indicate that a continuous phase transition occurs at the massless point δ=δc\delta =\delta_c accompanying breaking of the hidden Z2×Z2Z_2\times Z_2 symmetry.

Keywords

Cite

@article{arxiv.cond-mat/9401053,
  title  = {Numerical Study of the $S=1$ Antiferrromagnetic Spin Chain with Bond Alternation},
  author = {Yusuke Kato and Akihiro Tanaka},
  journal= {arXiv preprint arXiv:cond-mat/9401053},
  year   = {2016}
}

Comments

9 pages and 1 PostScript figure, Revtex 3.0 (Minor corrections in TEX-file format to remove possible compilatory troubles.)