English

SPIN AND CHARGE MODES OF THE t-J LADDER

Condensed Matter 2016-08-31 v1

Abstract

The spin and charge excitations of the t--J ladder are studied by exact diagonalization techniques for several electron densities. The various modes are classified according to their spin (singlet or triplet excitations) and their parity under a reflection with respect to the symmetry axis along the chains and a finite size scaling of the related gaps is performed. At low doping, formation of hole pairs leads to a spin gap for all J/tJ/t ratios. This phase is characterized by (at least) one vanishing energy mode {\it only} in the charge bonding channel when Kx0K_x\rightarrow 0 consistent with the existence of superconducting pairing correlations. At larger doping the spin gap disappears. Although the anti-bonding modes remain gapped, low energy Kx0K_x\sim 0 and Kx2kFK_x\sim 2k_F spin and charge bonding modes are found consistent with a single band Luttinger scenario. At sufficient low electron density and above a critical value of J/t we also expect another phase of electron pairs with gapped spin excitations.

Keywords

Cite

@article{arxiv.cond-mat/9501093,
  title  = {SPIN AND CHARGE MODES OF THE t-J LADDER},
  author = {D. Poilblanc and D. J. Scalapino and W. Hanke},
  journal= {arXiv preprint arXiv:cond-mat/9501093},
  year   = {2016}
}

Comments

4 pages, 11 figs. included in a uuencoded compressed file.