Current Conservation in the Self-Consistent Josephson Junction
arXiv:2505.09288 · doi:10.1103/1xbv-bvch
Abstract
Conventional treatments of Josephson junctions (JJs) are typically not current-conserving. In the mean-field BCS theory, current conservation is only guaranteed if the superconducting order parameter is treated self-consistently. We show that this requirement has significant consequences for the current-phase relation (CPR) in certain regimes, where the current density in the superconducting leads is non-negligible. To this end, we introduce a numerical method for the self-consistent treatment of the BdG equations with current conservation for quasi-1D superconductor-normal (metal)-superconductor (SNS) JJs. Our model incorporates a phase gradient of the order parameter in the leads, which is set to match the Josephson current through the weak link. We compare our method to standard, non-current-conserving approaches by calculating the CPR for SNS JJs while varying lengths and gate voltages controlling the normal metal. We show that current conservation has significant implications for the Josephson harmonics and can weaken or even reverse forward skewness of the CPR.
Updated version
References in corpus (24)
- Quantum state engineering with Josephson-junction devices
- Circuit Quantum Electrodynamics
- Superconducting Qubits: Current State of Play
- Superconductor Digital Electronics: Scalability and Energy Efficiency Issues
- Measurement of the current-phase relation of superconducting atomic contacts
- Current-phase relations of few-mode InAs nanowire Josephson junctions
- Current-phase relation of ballistic graphene Josephson junctions
- Self-consistent solution for proximity effect and Josephson current in ballistic graphene SNS Josephson junctions
- Observation of Josephson Harmonics in Tunnel Junctions
- Anharmonicity of a Gatemon Qubit with a Few-Mode Josephson Junction
- The Josephson effect throughout the BCS-BEC crossover
- Solution of the Bogoliubov-de Gennes equations at zero temperature throughout the BCS-BEC crossover: Josephson and related effects
- High-coherence superconducting qubits made using industry-standard, advanced semiconductor manufacturing
- Proximity effect in clean strong/weak/strong superconducting tri-layers
- Microscopic self-consistent theory of Josephson junctions including dynamical electron correlations
- Current Induced Hidden States in Josephson Junctions
- Limitations of the current-phase relation measurements by an asymmetric dc-SQUID
- Optimizing the speed of a Josephson junction
- Impact of junction length on supercurrent resilience against magnetic field in InSb-Al nanowire Josephson junctions
- Microscopic theory of the current-voltage characteristics of Josephson tunnel junctions
- Fate of global superconductivity in arrays of long SNS junctions
- Ballistic SNS sandwich as a Josephson junction
- Square-well model for superconducting pair-potential
- Current-phase relation of the SNS junction in a superconducting loop