We calculate the spectrum of the Andreev boundary modes in a two-dimensional superconductor formed at an interface between two different non-superconducting materials, e.g. insulating oxides. Inversion symmetry is absent in this system, and both the electron band structure and the superconducting pairing are strongly affected by the spin-orbit coupling of the Rashba type. We consider isotropic s-wave pairing states, both with and without time-reversal symmetry breaking, as well as various d-wave states. In all cases, there exist subgap Andreev boundary states, whose properties, in particular, the number and location of the zero-energy modes, qualitatively depend on the gap symmetry and the spin-orbit coupling strength.
@article{arxiv.1605.08394,
title = {Fermionic boundary modes in two-dimensional noncentrosymmetric superconductors},
author = {K. V. Samokhin and S. P. Mukherjee},
journal= {arXiv preprint arXiv:1605.08394},
year = {2016}
}
Comments
14 pages, 14 figures; v3 typos corrected, accepted in PRB