English

Topological quantum phase transition between Fermi liquid phases in an Anderson impurity model

Strongly Correlated Electrons 2018-12-05 v1

Abstract

We study a generalized Anderson model that mixes two localized configurations --one formed by two degenerate doublets and the other by a triplet with single-ion anisotropy DSz2DS_z^2-- by means of two degenerate conduction channels. The model has been derived for a single Ni impurity embedded into an O-doped Au chain. Using the numerical renormalization group, we find a topological quantum phase transition, at a finite value Dc,D_c, between two regular Fermi liquid phases of high (low) conductance and topological number 2IL/π=02 I_L/\pi = 0 (-1) for D<DcD < D_c (D>DcD > D_c), where ILI_L is the well-known Luttinger integral. At finite temperature the two phases are separated by a non-Fermi liquid phase with fractional impurity entropy 12ln2\frac{1}{2}{\rm ln}2 and other properties which remind those of the two-channel Kondo model.

Keywords

Cite

@article{arxiv.1805.11518,
  title  = {Topological quantum phase transition between Fermi liquid phases in an Anderson impurity model},
  author = {G. G. Blesio and L. O. Manuel and P. Roura-Bas and A. A. Aligia},
  journal= {arXiv preprint arXiv:1805.11518},
  year   = {2018}
}

Comments

6 pages + Supplemental Material, 8 figures