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Pré-Publication, Document De Travail Année : 2018

Spin-orbit splitting of Andreev states revealed by microwave spectroscopy

Résumé

We have performed microwave spectroscopy of Andreev states in superconducting weak links tailored in an InAs-Al (core-full shell) epitaxially-grown nanowire. The spectra present distinctive features, with bundles of four lines crossing when the superconducting phase difference across the weak link is 0 or π. We interpret these as arising from zero-field spin-split Andreev states. A simple analytical model, which takes into account the Rashba spin-orbit interaction in a nanowire containing several conduction channels, explains these features and their evolution with magnetic field. Our results show that the spin degree of freedom is addressable in Josephson junctions, and constitute a first step towards its manipulation. Introduction.
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Dates et versions

hal-01888992 , version 1 (12-10-2018)
hal-01888992 , version 2 (13-12-2018)

Identifiants

  • HAL Id : hal-01888992 , version 1

Citer

L Tosi, C Metzger, M F Goffman, C. Urbina, H. Pothier, et al.. Spin-orbit splitting of Andreev states revealed by microwave spectroscopy. 2018. ⟨hal-01888992v1⟩
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