English

Dynamic correlations of antiferromagnetic spin-1/2 XXZ chains at arbitrary temperature from complete diagonalization

Statistical Mechanics 2016-08-31 v1

Abstract

All eigenstates and eigenvalues are determined for the spin- 1/2 XXZXXZ chain H=2Ji(SixSi+1x+SiySi+1y+ΔSizSi+1z)H = 2J \sum_i ( S_{i}^{x} S_{i + 1}^{x} + S_{i}^{y} S_{i + 1}^{y} + \Delta S_i^z S_{i + 1}^{z}) for rings with up to N=16 spins, for anisotropies Δ=0,cos(0.3π)\Delta=0 , \cos(0.3\pi), and 1. The dynamic spin pair correlations <Sl+nμ(t)Slμ>,(μ=x,z)< S_{l+n}^{\mu}(t) S_l^{\mu} > , (\mu=x,z), the dynamic structure factors Sμ(q,ω)S^{\mu}(q,\omega), and the intermediate structure factors Iμ(q,t)I^{\mu}(q,t) are calculated for arbitrary temperature T. It is found, that for all T, Sz(q,ω)S^{z}(q,\omega) is mainly concentrated on the region ω<ε2(q)|\omega| < \varepsilon_2(q), where ε2(q)\varepsilon_2(q) is the upper boundary of the two-spinon continuum, although excited states corresponding to a much broader frequency spectrum contribute. This is also true for the Haldane-Shastry model and the frustrated Heisenberg model. The intermediate structure factors Iμ(q,t)I^{\mu}(q,t) for Δ0\Delta \neq 0 show exponential decay for high T and large q. Within the accessible time range, the time-dependent spin correlation functions do not display the long-time signatures of spin diffusion.

Keywords

Cite

@article{arxiv.cond-mat/9611077,
  title  = {Dynamic correlations of antiferromagnetic spin-1/2 XXZ chains at arbitrary temperature from complete diagonalization},
  author = {Klaus Fabricius and Ute Löw and Joachim Stolze},
  journal= {arXiv preprint arXiv:cond-mat/9611077},
  year   = {2016}
}

Comments

30 pages, REVTEX, 21 figures, to appear in Physical Review B