arXiv · 1401.2173
Majorana Flat Bands in s-Wave Gapless Topological Superconductors
Abstract
We demonstrate how the non-trivial interplay between spin-orbit coupling and nodeless $s$-wave superconductivity can drive a fully gapped two-band topological insulator into a time-reversal invariant gapless topological superconductor supporting symmetry-protected Majorana flat bands. We characterize topological phase diagrams by a ${\mathbb Z}_2 \times{\mathbb Z}_2$ partial Berry-phase invariant, and show that, despite the trivial crystal geometry, no unique bulk-boundary correspondence exists. We trace this behavior to the anisotropic quasiparticle bulk gap closing, linear vs. quadratic, and argue that this provides a unifying principle for gapless topological superconductivity. Experimental implications for tunneling conductance measurements are addressed, relevant for lead chalcogenide materials.
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Shusa Deng, Gerardo Ortiz, Amrit Poudel, Lorenza Viola. 2014-04-28. Majorana Flat Bands in s-Wave Gapless Topological Superconductors. https://doi.org/10.1103/physrevb.89.140507
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