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arxiv: 1707.03154 · v1 · pith:3UW3A3PPnew · submitted 2017-07-11 · ❄️ cond-mat.supr-con · cond-mat.mes-hall

4π periodic Andreev bound states in a Dirac semimetal

classification ❄️ cond-mat.supr-con cond-mat.mes-hall
keywords diracandreevboundconecontributionjosephsonjunctionjunctions
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Electrons in a Dirac semimetals possess linear dispersion in all three spatial dimensions, and form part of a developing platform of novel quantum materials. Bi$_{1-x}$Sb$_x$ supports a three-dimensional Dirac cone at the Sb-induced band inversion point. Nanoscale phase-sensitive junction technology is used to induce superconductivity in this Dirac semimetal. Radio frequency irradiation experiments reveal a significant contribution of 4$\pi$-periodic Andreev bound states to the supercurrent in Nb-Bi$_{0.97}$Sb$_{0.03}$-Nb Josephson junctions. The conditions for a substantial $4\pi$ contribution to the supercurrent are favourable because of the Dirac cone's topological protection against backscattering, providing very broad transmission resonances. The large g-factor of the Zeeman effect from a magnetic field applied in the plane of the junction, allows tuning of the Josephson junctions from 0 to $\pi$ regimes.

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