paper

topological superconductivity in the 30-twisted bilayer graphene

arXiv:2106.08542

Abstract

Based on our revised perturbational-band theory, we study possible pairing states driven by interaction in the electron-doped quasicrystal 30\degree-twisted bilayer graphene. Our mean-field study on the related t-J model predicts that, the beneath-van-Hove and beyond-van-Hove low doping regimes are covered by the chiral and topological superconductivities (TSCs) respectively. The -TSC possesses a pairing angular momentum 4, and hence following each effective - rotation by , the pairing phase changes . This intriguing TSC is novel, as it belongs to a special 2D - irreducible representation of the effective point group unique to this quasicystal and absent on periodic lattices. The Ginzburg-Landau theory suggested that the - TSC originates from the Josephson coupling between the pairings on the two mono-layers.

4pages,3 figures, plus Supplementary Material