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Superconducting order parameter ππ-phase shift in magnetic impurity wires

Published 24 Sep 2016 in cond-mat.supr-con | (1609.07626v1)

Abstract: It has previously been found that a magnetic impurity in a conventional ss-wave superconductor can give rise to a local π\pi-phase shift of the superconducting order parameter. By studying a finite wire of ferromagnetic impurities, we are able to trace the origin of the π\pi-phase shift to a resonance condition for the Bogoliubov-de Gennes quasiparticle states. When non-resonating states localized at the impurity sites are pulled into the condensate for increasing magnetic strength, the superconducting order parameter is reduced in discrete steps, eventually resulting in a π\pi-phase shift. We also show that for a finite spin-orbit coupling, the π\pi-phase shift is preserved and occurs in a large portion of the topologically non-trivial phase.

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