English

Odd-frequency pairing and time-reversal symmetry breaking for repulsive interactions

Superconductivity 2022-09-28 v2 Strongly Correlated Electrons

Abstract

We study the pairing of fermions by an interaction consisting of a Hubbard repulsion, mimicking a screened Coulomb potential, and a dynamical phonon-mediated attraction. For such interaction, the gap equation allows even- and odd-frequency solutions Δe\Delta_e and Δo\Delta_o. We show that odd-frequency pairing does not develop within the Eliashberg approximation due to over-critical pair-breaking from the self-energy. When vertex corrections are included, the pairing interaction gets stronger, and Δo\Delta_o can develop. We argue that even in this case keeping the self-energy is still a must as it cancels out the thermal piece in the gap equation. We further argue that Δo\Delta_o is not affected by Hubbard repulsion and for strong repulsion is comparable to a reduced Δe\Delta_e. The resulting superconducting state is a superposition Δe±iΔo\Delta_e \pm i \Delta_o, which spontaneously breaks the time-reversal symmetry, despite that the pairing symmetry is an ordinary ss-wave.

Keywords

Cite

@article{arxiv.2206.01783,
  title  = {Odd-frequency pairing and time-reversal symmetry breaking for repulsive interactions},
  author = {Dimitri Pimenov and Andrey V. Chubukov},
  journal= {arXiv preprint arXiv:2206.01783},
  year   = {2022}
}

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journal version

R2 v1 2026-06-24T11:38:48.715Z