Inductive microwave response of Yu-Shiba-Rusinov states
arXiv:2112.11261 · doi:10.1103/PhysRevB.105.054503
Abstract
We calculate the frequency-dependent admittance of a phase-biased Josephson junction spanning a magnetic impurity or a spinful Coulomb-blockaded quantum dot. The local magnetic moment gives rise to Yu-Shiba-Rusinov bound states, which govern the sub-gap absorption as well as the inductive response. We model the system by a superconducting spin-polarized exchange-cotunnel junction and calculate the linear current response to an AC bias voltage, including its dependence on phase bias as well as particle-hole, and source-drain coupling asymmetry. The corresponding inductive admittance is analyzed and compared to results of a zero-bandwidth, as well as an infinite-gap approximation to the superconducting Anderson model. All three approaches capture the interaction-induced transition, which is reflected as a discontinuity in the adiabatic inductive response.
21 pages, 14 figures
References in corpus (16)
- Hard gap in epitaxial semiconductor-superconductor nanowires
- Coherent manipulation of an Andreev spin qubit
- Spectral properties of locally correlated electrons in a BCS superconductor
- Critical Current 0- Transition in Designed Josephson Quantum Dot Junctions
- Even-odd effect in Andreev Transport through a Carbon Nanotube Quantum Dot
- Kondo Universal Scaling for a Quantum Dot Coupled to Superconducting Leads
- Tuning Yu-Shiba-Rusinov States in a Quantum Dot
- Kondo effect in asymmetric Josephson couplings through a quantum dot
- Magnetic anisotropy effects on quantum impurities in superconducting host
- Andreev spin qubits in multichannel Rashba nanowires
- Superconductivity-enhanced bias spectroscopy in carbon nanotube quantum dots
- Manipulating the magnetic state of a carbon nanotube Josephson junction using the superconducting phase
- Circuit-QED with phase-biased Josephson weak links
- Yu-Shiba-Rusinov states in real metals
- From adiabatic to dispersive readout of quantum circuits
- The fate of the Kondo cloud in a superconductor
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- Strong nonlocal tuning of the current-phase relation of a quantum dot based Andreev molecule
- Ground state phase diagram and "parity flipping'' microwave transitions in a gate-tunable Josephson Junction
- Generalized transmon Hamiltonian for Andreev spin qubits
- YSR Bond Qubit in a Double Quantum Dot with cQED Operation
- Exotic bottomonium hadronic transitions
- Slave-spin approach to the Anderson-Josephson quantum dot
- Detection of persistent current correlation in cavity-QED