Nonequilibrium Josephson diode effect in periodically driven SNS junctions
arXiv:2206.07014 · doi:10.1088/1402-4896/acd02f
Abstract
In typical Josephson junctions, the Josephson current is an odd function of the superconducting phase difference. Recently, diode effect in Josephson junctions is observed in experiments wherein the maximum and the minimum values of the Josephson current in the current-phase relation do not have the same magnitude. We propose a superconductor-normal metal-superconductor (SNS) junction where Josephson diode effect manifests when the normal metal region is driven. Time reversal symmetry and inversion symmetry need to be broken in the SNS junction for the diode effect to show up. We calculate long time averaged current and show that the system exhibits diode effect for two configurations of the driven SNS junction - one in which inversion symmetry is broken in the undriven part of the Hamiltonian and the other wherein both the symmetries are broken by the driving potential. In the latter configuration, a nonzero current known as anomalous current appears at the junction in absence of phase bias. In the proposed setup, the diode effect vanishes in the adiabatic limit.
8 pages, 7 captioned figures
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- Anomalous Josephson effect and rectification in junctions between Floquet topological superconductors
- Time reversal symmetry breaking and zero magnetic field Josephson diode effect in Dirac semimetal Cd3As2-mediated asymmetric SQUIDs
- Design of a Josephson diode based on double magnetic impurities
- Josephson diode effect in one-dimensional quantum wires connected to superconductors with mixed singlet-triplet pairing
- Josephson diode effect in junctions of superconductors with band asymmetric metals
- Biharmonic-Drive Tunable Josephson Diode
- Josephson Diode Effect from Nonequilibrium Current in a Superconducting Interferometer
- Four-terminal Josephson junctions: diode effects, anomalous currents and transverse currents