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Suppressed superexchange interactions in the cuprates by bond-stretching oxygen phonons

Strongly Correlated Electrons 2022-05-26 v1 Materials Science

Abstract

We study a multi-orbital Hubbard--Su-Schrieffer-Heeger model for the one-dimensional (1D) corner-shared cuprates in the adiabatic and nonadiabatic limits using the exact diagonalization and determinant quantum Monte Carlo methods. Our results demonstrate that lattice dimerization can be achieved only over a narrow range of couplings slightly below a critical coupling gcg_c at half-filling. Beyond this critical coupling, the sign of the effective hopping changes, and the lattice becomes unstable. We also examine the model's temperature-dependent uniform magnetic susceptibility and the dynamical magnetic susceptibility and compare them to the results of an effective spin-1/21/2 Heisenberg model. In doing so, we numerically demonstrate that the lattice fluctuation induced by the ee-ph interaction suppresses the effective superexchange interaction. Our results elucidate the effect of bond-stretching phonons in the parent cuprate compounds in general and are particularly relevant to 1D cuprates, where strong ee-ph interactions have recently been inferred.

Keywords

Cite

@article{arxiv.2205.12678,
  title  = {Suppressed superexchange interactions in the cuprates by bond-stretching oxygen phonons},
  author = {Shaozhi Li and Steven Johnston},
  journal= {arXiv preprint arXiv:2205.12678},
  year   = {2022}
}

Comments

6 pages, 4 figures