English

Phase transition and phase diagram at a general filling in the spinless one-dimensional Holstein Model

Strongly Correlated Electrons 2009-11-11 v2 Materials Science

Abstract

Among the mechanisms for lattice structural deformation, the electron-phonon interaction mediated Peierls charge-density-wave (CDW) instability in single band low-dimensional systems is perhaps the most ubiquitous. The standard mean-field picture predicts that the CDW transition occurs at all fillings and all values of the electron-phonon coupling gg and the adiabaticity parameter t/ω0t/\omega_0. Here, we correct the mean-field expression for the Peierls instability condition by showing that the non-interacting static susceptibility, at twice the Fermi momentum, should be replaced by the dynamic one. We derive the Luttinger liquid (LL) to CDW transition condition, {\it exact to second order in a novel blocked perturbative approach}, for the spinless one-dimensional Holstein model in the adiabatic regime. The small parameter is the ratio gω0/tg \omega_0/t. We present the phase diagram at non-half-filling by obtaining the surprising result that the CDW occurs in a more restrictive region of a two parameter (g2ω0/tg^2 \omega_0/t and t/ω0t/\omega_0) space than at half-filling.

Keywords

Cite

@article{arxiv.cond-mat/0606291,
  title  = {Phase transition and phase diagram at a general filling in the spinless one-dimensional Holstein Model},
  author = {Sanjoy Datta and Sudhakar Yarlagadda},
  journal= {arXiv preprint arXiv:cond-mat/0606291},
  year   = {2009}
}

Comments

Made changes in the appendices and also in notation