Flat-band superconductivity for tight-binding electrons on a square-octagon lattice

Publication date

2020-06-29

Authors

Nunes, Lizardo H. C. M.ISNI 0000000518011477
de Morais Smith, CristianeISNI 0000000394433837

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

unspecified

Abstract

The discovery of superconductivity in twisted bilayer graphene has triggered a resurgence of interest in flat-band superconductivity. Here, we investigate the square-octagon lattice, which also exhibits two perfectly flat bands when next-nearest-neighbor hopping or an external magnetic field are added to the system. We calculate the superconducting phase diagram in the presence of on-site attractive interactions and find two superconducting domes, as observed in several types of unconventional superconductors. The critical temperature shows a linear dependence on the coupling constant, suggesting that superconductivity might reach high temperatures in the square-octagon lattice. Our model could be experimentally realized using photonic or ultracold atoms' lattices.

Keywords

Citation

Nunes, L H C M & Smith, C M 2020, 'Flat-band superconductivity for tight-binding electrons on a square-octagon lattice', Physical Review B, vol. 101, no. 22, 224514, pp. 1-8. https://doi.org/10.1103/PhysRevB.101.224514