Journal article

Interacting Surface States of Three-Dimensional Topological Insulators

T Neupert, S Rachel, R Thomale, M Greiter

Physical Review Letters | AMER PHYSICAL SOC | Published : 2015

Abstract

We numerically investigate the surface states of a strong topological insulator in the presence of strong electron-electron interactions. We choose a spherical topological insulator geometry to make the surface amenable to a finite size analysis. The single-particle problem maps to that of Landau orbitals on the sphere with a magnetic monopole at the center that has unit strength and opposite sign for electrons with opposite spin. Assuming density-density contact interactions, we find superconducting and anomalous (quantum) Hall phases for attractive and repulsive interactions, respectively, as well as chiral fermion and chiral Majorana fermion boundary modes between different phases. Our se..

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University of Melbourne Researchers

Grants

Awarded by European Commission


Funding Acknowledgements

T. N. acknowledges several fruitful discussions with F. D. M. Haldane and thanks him for sharing the results of Ref. [28] prior to publication. R. T. thanks T. Dumitrescu and M. Metlitski for discussions. This work was supported by DARPA SPAWARSYSCEN Pacific N66001-11-1-4110, by the Helmholtz association through VI-521, by the DFG through FOR 960, SPP 1666, and SFB 1143, and by the European Research Council through the grant TOPOLECTRICS (ERC-StG-Thomale-336012).