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Evidence for spin-triplet odd-parity superconductivity close to type-II van Hove singularities

Superconductivity 2015-05-14 v2 Strongly Correlated Electrons

Abstract

Searching for unconventional Cooper pairing states has been at the heart of superconductivity research since the discovery of BCS superconductors. In particular, spin-triplet odd-parity pairing states were recently revisited due to the possibility of tuning towards topological superconductors. In this context, it is interesting to note a recent proposal that such a spin-triplet pairing instability occurs when the band filling is near van Hove singularities (vHS) associated with momenta away from time-reversal invariant momenta named type-II vHS. However, this result was obtained within a weak coupling renormalization group with Fermi surface patch approximation. To explore superconducting instabilities beyond this weak coupling Fermi surface patch approximation, we perform systematic study on Hubbard model in a two-dimensional square lattice using three different methods: random phase approximation, large-scale dynamical mean field theory simulations with continuous time quantum Monte Carlo (CTQMC) impurity solver, and large-scale dynamical cluster simulations with CTQMC cluster solver. We find, in a wide doping range centered around the type-II van Hove filling, a two-fold degenerate, spin-triplet, odd-parity pp-wave pairing state emerges due to repulsive interaction, when the Fermi surface is not sufficiently nested. Possible relevance of our findings to the recently discovered superconductors LaO1x_{1-x}Fx_{x}BiS2_{2}, Ir1x_{1-x}Ptx_{x}Te2_{2} and proposed doped BC3_{3} are also discussed.

Keywords

Cite

@article{arxiv.1408.1407,
  title  = {Evidence for spin-triplet odd-parity superconductivity close to type-II van Hove singularities},
  author = {Zi Yang Meng and Fan Yang and Kuang-Shing Chen and Hong Yao and Hae-Young Kee},
  journal= {arXiv preprint arXiv:1408.1407},
  year   = {2015}
}

Comments

9 pages, 9 figures