Josephson diode effect in monolithic dc-SQUIDs based on 3D Dayem nanobridges
arXiv:2306.12765 · doi:10.1063/5.0165259
Abstract
It was recently experimentally proved that the superconducting counterpart of a diode, i.e., a device that realizes nonreciprocal Cooper pairs transport, can be realized by breaking the spatial and time-reversal symmetry of a system simultaneously. Here we report the theory, fabrication, and operation of a monolithic dc superconducting quantum interference device (dc-SQUID) that embedding three-dimensional (3D) Dayem nanobridges as weak links realizes an efficient and magnetic flux-tunable supercurrent diode. The device is entirely realized in Al and achieves a maximum rectification efficiency of , which stems from the high harmonic content of its current-to-phase relation only without the need of any sizable screening current caused by a finite loop inductance. Our interferometer can be easily integrated with state-of-the-art superconducting electronics, and since it does not require a finite loop inductance to provide large rectification its downsizing is not limited by the geometrical constraints of the superconducting ring.
References in corpus (5)
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- Theory of universal diode effect in three-terminal Josephson junctions
- Dissipationless Nonlinearity in Quantum Material Josephson Diodes
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- Supercurrent Diode Effect in Josephson Interferometers with Multiband Superconductors
- Non-Hermitian superconducting diode effect
- Influence of capacitance and thermal fluctuations on the Josephson diode effect in asymmetric higher-harmonic SQUIDs
- Quasi-ideal feedback-loop supercurrent diode
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- Diode effect in Shapiro steps in an asymmetric SQUID with a superconducting nanobridge
- Diode effect in the Fraunhofer pattern of disordered planar Josephson junctions
- Superconducting Diode Effect in Double Quantum Dot Device
- Perturbative Analysis of the Field-Free Josephson Diode Effect in a Multilayered Josephson Junction
- Spin Josephson diode effect induced by higher-harmonic spin Josephson currents in a diffusive Josephson junction
- Streamline controlled rectification of supercurrent in thin-film asymmetric weak links