Publication | Open Access
Relating Andreev Bound States and Supercurrents in Hybrid Josephson Junctions
95
Citations
33
References
2020
Year
Superconducting MaterialEngineeringJosephson JunctionsAndreev SpectrumTunneling MicroscopySuperconductivityQuantum MaterialsHybrid Josephson JunctionsQuantum EntanglementSuperconducting DevicesQuantum ScienceMajorana FermionVarious Transmission ProbabilitiesPhysicsQuantum DeviceNatural SciencesCondensed Matter PhysicsApplied PhysicsQuantum Interference Device
We demonstrate concomitant measurement of phase-dependent critical current and Andreev bound state spectrum in a highly transmissive InAs Josephson junction embedded in a dc superconducting quantum interference device (SQUID). Tunneling spectroscopy reveals Andreev bound states with near unity transmission probability. A nonsinusoidal current-phase relation is derived from the Andreev spectrum, showing excellent agreement with the one extracted from the SQUID critical current. Both measurements are reconciled within a short junction model where multiple Andreev bound states, with various transmission probabilities, contribute to the entire supercurrent flowing in the junction.
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