English

Magnon and Hole Excitations in the Two-Dimensional Half-filled Hubbard Model

Strongly Correlated Electrons 2009-11-11 v1

Abstract

Spin and hole excitation spectra and spectral weights are calculated for the half-filled Hubbard model, as a function of t/Ut/U. We find that the high energy spin spectra are sensitive to charge fluctuations. The energy difference Δ(π,0)Δ(π/2,π/2)\Delta(\pi,0)- \Delta(\pi/2,\pi/2), which is negative for the Heisenberg model, changes sign at a fairly small t/U0.053(5)t/U\approx 0.053(5). The hole bandwidth is proportional to JJ, and considerably larger than in the t-J models. It has a minimum at (π/2,π/2\pi/2,\pi/2) and a very weak dispersion along the antiferromagnetic zone boundary. A good fit to the measured spin spectra in La2_2CuO4_4 at T=10KT=10K is obtained with the parameter values U=3.1eVU=3.1{\rm eV}, t=0.35eVt=0.35{\rm eV}.

Keywords

Cite

@article{arxiv.cond-mat/0501029,
  title  = {Magnon and Hole Excitations in the Two-Dimensional Half-filled Hubbard Model},
  author = {Weihong Zheng and Rajiv R. P. Singh and J. Oitmaa and O. P. Sushkov and C. J. Hamer},
  journal= {arXiv preprint arXiv:cond-mat/0501029},
  year   = {2009}
}

Comments

4 pages, 5 figures