Conductance spectroscopy of topological superconductor wire junctions
Abstract
We study the zero-temperature transport properties of one-dimensional normal-superconductor (NS) junctions with topological superconductors across their topological transitions. Working within the Blonder-Tinkham-Klapwijk (BTK) formalism generalized for topological NS junctions, we analytically calculate the differential conductance for tunneling into two models of a topological superconductor: a spinless intrinsic -wave superconductor and a spin-orbit-coupled -wave superconductor in a Zeeman field. In both cases we verify that the zero-bias conductance is robustly quantized at in the topological regime, while it takes nonuniversal values in the non-topological phase. The conductance spectra in the topological state develops a peak at zero bias for certain parameter regimes, with the peak width controlled by the strength of spin-orbit coupling and barrier transparency.
Cite
@article{arxiv.1503.06801,
title = {Conductance spectroscopy of topological superconductor wire junctions},
author = {F. Setiawan and P. M. R. Brydon and Jay D. Sau and S. Das Sarma},
journal= {arXiv preprint arXiv:1503.06801},
year = {2015}
}
Comments
10 pages, 7 figures. Minor typo corrected