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Numerical Studies of the two-leg Hubbard ladder

Strongly Correlated Electrons 2009-10-31 v1

Abstract

The Hubbard model on a two-leg ladder structure has been studied by a combination of series expansions at T=0 and the density-matrix renormalization group. We report results for the ground state energy E0E_0 and spin-gap Δs\Delta_s at half-filling, as well as dispersion curves for one and two-hole excitations. For small UU both E0E_0 and Δs\Delta_s show a dramatic drop near t/t0.5t/t_{\perp}\sim 0.5, which becomes more gradual for larger UU. This represents a crossover from a "band insulator" phase to a strongly correlated spin liquid. The lowest-lying two-hole state rapidly becomes strongly bound as t/tt/t_{\perp} increases, indicating the possibility that phase separation may occur. The various features are collected in a "phase diagram" for the model.

Keywords

Cite

@article{arxiv.cond-mat/0007388,
  title  = {Numerical Studies of the two-leg Hubbard ladder},
  author = {Zheng Weihong and J. Oitmaa and C. J. Hamer and R. J. Bursill},
  journal= {arXiv preprint arXiv:cond-mat/0007388},
  year   = {2009}
}

Comments

10 figures, revtex