Andreev spectrum with high spin-orbit interactions: Revealing spin splitting and topologically protected crossings
A. Murani, A. Chepelianskii, S. Guéron, H. Bouchiat
DOI 10.1103/PhysRevB.96.165415 · Physical Review B
Active bibliographic source — not scientific approval
Bibliographic access preserves source history; it does not approve extracted materials or validate reported claims. Review warnings on each occurrence separately.
Abstract
In order to point out experimentally accessible signatures of spin-orbit interaction, we investigate numerically the Andreev spectrum of a multichannel mesoscopic quantum wire (N) with high spin-orbit interaction coupled to superconducting electrodes (S), contrasting topological and nontopological behaviors. In the nontopological case (square lattice with Rashba interactions), we find that the Kramers degeneracy of Andreev levels is lifted by a phase difference between the S reservoirs except at multiples of π, when the normal quantum wires can host several conduction channels. The level crossings at these points invariant by time-reversal symmetry are not lifted by disorder. Whereas the dc Josephson current is insensitive to these level crossings, the high-frequency admittance (susceptibility) at finite temperature reveals these level crossings and the lifting of their degeneracy at π by a small Zeeman field. We have also investigated the hexagonal lattice with intrinsic spin-orbit interaction in the range of parameters where it is a two-dimensional topological insulator with one-dimensional helical edges protected against disorder. Nontopological superconducting contacts can induce topological superconductivity in this system characterized by zero-energy level crossing of Andreev levels. Both Josephson current and finite-frequency admittance carry then very specific signatures at low temperature of this disorder-protected Andreev level crossing at π and zero energy.
Similar papers
Andreev spectroscopy of nonhelical spin textures in topological insulators
similarity 0.91David J. Alspaugh et al.
Source status unknown — claims are unverified
Spin-Orbit Splitting of Andreev States Revealed by Microwave Spectroscopy
similarity 0.91L. Tosi et al.
Source status unknown — claims are unverified
Tunability of Andreev levels via spin-orbit coupling in Zeeman-split Josephson junctions
similarity 0.91Tatsuki Hashimoto et al.
Source status unknown — claims are unverified
Magnetoelectrically tunable Andreev bound state spectra and spin polarization in p-wave Josephson junctions
similarity 0.90Maria Teresa Mercaldo et al.
Source status unknown — claims are unverified
Spin-filtered and spatially distinguishable crossed Andreev reflection in a silicene-superconductor junction
similarity 0.90Kangkang Li & Yan-Yang Zhang
Source status unknown — claims are unverified
Scattering theory of topological invariants in nodal superconductors
similarity 0.90J. P. Dahlhaus et al.
Source status unknown — claims are unverified