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Kohn-Luttinger mechanism driven exotic topological superconductivity on the Penrose lattice

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arxiv 2001.07043 v3 pith:2PLPH5WP submitted 2020-01-20 cond-mat.str-el cond-mat.supr-con

Kohn-Luttinger mechanism driven exotic topological superconductivity on the Penrose lattice

classification cond-mat.str-el cond-mat.supr-con
keywords pairinglatticedrivenrepulsivesymmetryinteractionskohn-luttingermechanism
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The Kohn-Luttinger mechanism for unconventional superconductivity (SC) driven by weak repulsive electron-electron interactions on a periodic lattice is generalized to the quasicrystal (QC) via a real-space perturbative approach. The repulsive Hubbard model on the Penrose lattice is studied as an example, on which a classification of the pairing symmetries is performed and a pairing phase diagram is obtained. Two remarkable properties of these pairing states are revealed, due to the combination of the presence of the point-group symmetry and the lack of translation symmetry on this lattice. Firstly, the spin and spacial angular momenta of a Cooper pair is de-correlated: for each pairing symmetry, both spin-singlet and spin-triplet pairings are possible even in the weak-pairing limit. Secondly, the pairing states belonging to the 2D irreducible representations of the $D_5$ point group can be time-reversal-symmetry-breaking topological SCs carrying spontaneous bulk super current and spontaneous vortices. These two remarkable properties are general for the SCs on all QCs, and are rare on periodic lattices. Our work starts the new area of unconventional SCs driven by repulsive interactions on the QC.

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