Topological Phases of Noncentrosymmetric Superconductors: Edge States, Majorana Fermions, and the Non-Abelian Statistics
Masatoshi Sato, Satoshi Fujimoto

TL;DR
This paper explores topological phases in noncentrosymmetric superconductors, revealing conditions for edge states, Majorana modes, and non-Abelian vortex statistics, even under magnetic fields, with implications for quantum computing.
Contribution
It demonstrates the emergence of topological order and Majorana modes in noncentrosymmetric superconductors with parity-mixed pairing, including effects of magnetic fields and Rashba spin-orbit coupling.
Findings
Gapless edge states and Majorana modes occur when triplet pairing dominates.
Quantum spin Hall effect persists under magnetic fields perpendicular to edge modes.
Non-Abelian vortex statistics are possible under specific conditions.
Abstract
The existence of edge states and zero energy modes in vortex cores is a hallmark of topologically nontrivial phases realized in various condensed matter systems such as the fractional quantum Hall states, p+ip superconductors, and Z_2 insulators (quantum spin Hall state). We examine this scenario for two dimensional noncentrosymmetric superconductors which allow the parity-mixing of Cooper pairs. It is found that even when the s-wave pairing gap is nonzero, provided that the superconducting gap of spin-triplet pairs is larger than that of spin-singlet pairs, gapless edge states and zero energy Majorana modes in vortex cores emerge, characterizing topological order. Furthermore, it is shown that for Rashba superconductors, the quantum spin Hall effect produced by gapless edge states exists even under an applied magnetic field which breaks time-reversal symmetry provided that the field…
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