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cond-mat.supr-con2026

Graphene Josephson diodes from inherent asymmetric disorder

Ivan Villani, Luca Chirolli, Matteo Carrega +10

Josephson diodes are non-reciprocal superconducting devices characterized by different switching currents depending on the current flow direction. They recently attracted considera…

cond-mat.supr-con2026

Impact of magnetic field direction on anti-dot-based superconducting diodes

E. B. de Melo Junior, E. Strambini, F. Giazotto +1

The superconducting diode effect (SDE) is a fundamental building block for dissipationless nonreciprocal electronics, yet its microscopic origins in thin films often involve compet…

cond-mat.supr-con20252 cited

Diode effect in the Fraunhofer pattern of disordered planar Josephson junctions

Luca Chirolli, Angelo Greco, Alessandro Crippa +4

The Josephson diode effect describes the property of a Josephson junction to have different values of the critical current for different direction of applied bias current and it is…

cond-mat.supr-con2025

Supercurrent diode with high winding vortex

Yuri Fukaya, Maria Teresa Mercaldo, Daniel Margineda +5

Nonreciprocal supercurrent refers to the phenomenon where the maximum dissipationless current in a superconductor depends on its direction of flow. This asymmetry underlies the ope…

cond-mat.supr-con2025

Biharmonic-Drive Tunable Josephson Diode

L. Borgongino, R. Seoane Souto, A. Paghi +6

The superconducting diode effect has garnered significant interest due to its prospective applications in cryogenic electronics and computing, enabling directional supercurrent tra…

cond-mat.supr-con2025

Supercurrent Time Division Multiplexing with Solid-State Integrated Hybrid Superconducting Electronics

Alessandro Paghi, Laura Borgongino, Simone Tortorella +4

Time-division multiplexing of cryogenic signals is a promising approach to reduce space requirements, shorten cooldown times, and increase the number of quantum devices measured pe…