English

Non-Fermi-liquid behavior in quantum impurity models with superconducting channels

Strongly Correlated Electrons 2017-10-02 v1

Abstract

We study how the non-Fermi-liquid nature of the overscreened multi-channel Kondo impurity model affects the response to a BCS pairing term that, in the absence of the impurity, opens a gap Δ\Delta. We find that non-Fermi liquid features do persist even at finite Δ\Delta: the local density of states lacks coherence peaks, the states in the continuum above the gap are unconventional, and the boundary entropy is a non-monotonic function of temperature. Even more surprisingly, we also find that the low-energy spectrum in the limit Δ0\Delta\to 0 actually does not correspond to the spectrum strictly at Δ=0\Delta=0. In particular, the Δ0\Delta\to 0 ground state is an orbitally degenerate spin-singlet, while it is an orbital singlet with a residual spin degeneracy at Δ=0\Delta=0. In addition, there are fractionalized spin-1/2 sub-gap excitations whose energy in units of Δ\Delta tends towards a finite and universal value when Δ0\Delta\to 0; as if the universality of the anomalous power-law exponents that characterise the overscreened Kondo effect turned into universal energy ratios when the scale invariance is broken by Δ0\Delta\not=0. This intriguing phenomenon can be explained by the renormalisation flow towards the overscreened fixed point and the gap cutting off the orthogonality catastrophe singularities.

Keywords

Cite

@article{arxiv.1606.07697,
  title  = {Non-Fermi-liquid behavior in quantum impurity models with superconducting channels},
  author = {Rok Žitko and Michele Fabrizio},
  journal= {arXiv preprint arXiv:1606.07697},
  year   = {2017}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-22T14:33:36.597Z