Microscopic simulation of superconductor-topological insulator proximity structures
Abstract
We present microscopic, self-consistent calculations of the superconducting order parameter and pairing correlations near the interface of an -wave superconductor and a three-dimensional topological insulator with spin-orbit coupling. We discuss the suppression of the order parameter by the topological insulator and show that the equal-time pair correlation functions in the triplet channel, induced by spin-flip scattering at the interface, are of symmetry. We verify that the spectrum at sub-gap energies is well described by the Fu-Kane model. The sub-gap modes are viewed as interface states with spectral weight penetrating well into the superconductor. We extract the phenomenological parameters of the Fu-Kane model from microscopic calculations, and find they are strongly renormalized from the bulk material parameters. This is consistent with previous results of Stanescu et al for a lattice model using perturbation theory in the tunneling limit.
Cite
@article{arxiv.1101.2904,
title = {Microscopic simulation of superconductor-topological insulator proximity structures},
author = {Mahmoud Lababidi and Erhai Zhao},
journal= {arXiv preprint arXiv:1101.2904},
year = {2015}
}
Comments
8 pages, 10 figures; references added in v2