Perturbation theory of a superconducting impurity quantum phase transition
arXiv:1501.07488 · doi:10.1038/srep08821
Abstract
A single-level quantum dot with Coulomb repulsion attached to two superconducting leads is studied via the perturbation expansion in the interaction strength. We use the Nambu formalism and the standard many-body diagrammatic representation of the impurity Green functions to formulate the Matsubara self-consistent perturbation expansion. We show that at zero temperature second order of the expansion in its version yields a nearly perfect agreement with the numerically exact calculations for the position of the phase boundary at which the Andreev bound states reach the Fermi energy as well as for the values of single-particle quantities in the 0-phase. We present results for phase diagrams, level occupation, induced local superconducting gap, Josephson current, and energy of the Andreev bound states with the precision surpassing any (semi)analytical approaches employed thus far.
7 pages, 4 figures; v2: published version, minor updates
References in corpus (7)
- Supercurrent reversal in quantum dots
- Quantum supercurrent transistors in carbon nanotubes
- Energy resolution and discretization artefacts in the numerical renormalization group
- Critical Current 0- Transition in Designed Josephson Quantum Dot Junctions
- Josephson current through a single Anderson impurity coupled to BCS leads
- Josephson current through a molecular transistor in a dissipative environment
- Critical and excess current through an open quantum dot: Temperature and magnetic field dependence
Cited by in corpus (47)
- Single magnetic adsorbates on s-wave superconductors
- Nontopological zero-bias peaks in full-shell nanowires induced by flux tunable Andreev states
- The Anderson-Josephson quantum dot -- A theory perspective
- Yu-Shiba-Rusinov states in phase-biased S-QD-S junctions
- Perturbation theory for an Anderson quantum dot asymmetrically attached to two superconducting leads
- Constructive influence of the induced electron pairing on the Kondo state
- Microwave response of an Andreev bound state
- Quantum dot attached to superconducting leads: Relation between symmetric and asymmetric coupling
- Josephson-phase-controlled interplay between correlation effects and electron pairing in a three-terminal nanostructure
- Heat current across a capacitively coupled double quantum dot for high magnetic field
- Practical Guide to Quantum Phase Transitions in Quantum-Dot-Based Tunable Josephson Junctions
- Generalized atomic limit of a double quantum dot coupled to superconducting leads
- Double quantum dot Cooper-pair splitter at finite couplings
- Spectral and transport properties of a half-filled Anderson impurity coupled to phase-biased superconducting and metallic leads
- Magneto-electric spectroscopy of Andreev bound states in Josephson quantum dots
- Fermion-parity qubit in a proximitized double quantum dot
- Direct Transport between Superconducting Subgap States in a Double Quantum Dot
- How long does it take to form the Andreev quasiparticles ?
- Time-dependent Andreev bound states of a quantum dot coupled to two superconducting leads
- Nanoscale Control of Quantum States in Radical Molecules on Superconducting Pb(111)
- Fingerprints of Majorana fermions in spin-resolved subgap spectroscopy
- Large Tunable Thermophase in Superconductor -- Quantum Dot -- Superconductor Josephson Junctions
- Inductive microwave response of Yu-Shiba-Rusinov states
- Interplay between electron pairing and Dicke effect in triple quantum dots structures
- Fluxoid-induced pairing suppression and near-zero modes in quantum dots coupled to full-shell nanowires
- Quench dynamics of correlated quantum dot proximitized to superconducting lead
- Correlation effects in superconducting quantum dot systems
- Transient effects in double quantum dot sandwiched laterally between superconducting and metallic leads
- Transient dynamics of a magnetic impurity coupled to superconducting electrodes: exact numerics versus perturbation theory
- Yu-Shiba-Rusinov states of single magnetic molecule in an superconductor
- Effective low-energy models for superconducting impurity systems
- Subgap states in semiconductor-superconductor devices for quantum technologies: Andreev qubits and minimal Majorana chains
- Second Order Perturbation Theory for a Superconducting Double Quantum Dot
- Many-body perturbation theory for the superconducting quantum dot: Fundamental role of the magnetic field
- Single impurity Anderson model out of equilibrium: A two-particle semi-analytic approach
- Transmission of a microwave cavity coupled to localized Shiba states
- Yu-Shiba-Rusinov states, the BCS-BEC crossover, and the exact solution in the flat-band limit
- Influence of Rashba spin-orbit coupling on the 0- transition and Kondo temperature in 1D superconductors
- The PointGroupNRG code for numerical renormalization group calculations with discrete point-group symmetries
- Influence of superconductivity on the magnetic moment of quantum impurity embedded in BCS superconductor
- Anisotropy and spin-fluctuation effects on the spectral properties of Shiba impurities
- Scalable Effective Models for Superconducting Nanostructures: Applications to Double, Triple, and Quadruple Quantum Dots
- Renormalization approach to the superconducting Kondo model
- Evolution of the Andreev bands in the half-filled superconducting periodic Anderson model
- Slave-spin approach to the Anderson-Josephson quantum dot
- Quantum phase transition in a double quantum dot Josephson junction driven by electron-electron interactions
- Magnetic flux controlled current phase relationship in double Quantum Dot Josephson junction