Magnetic-field-free nonreciprocal transport in graphene multi-terminal Josephson junctions
arXiv:2301.05081 · doi:10.1103/PhysRevApplied.21.034011
Abstract
Nonreciprocal superconducting devices have attracted growing interest in recent years as they potentially enable directional charge transport for applications in superconducting quantum circuits. Specifically, the superconducting diode effect has been explored in two-terminal devices that exhibit superconducting transport in one current direction while showing dissipative transport in the opposite direction. Here, we exploit multi-terminal Josephson junctions (MTJJs) to engineer magnetic-field-free nonreciprocity in multi-port networks. We show that when treated as a two-port electrical network, a three-terminal Josephson junction (JJ) with an asymmetric graphene region exhibits reconfigurable two-port nonreciprocity. We observe nonreciprocal (reciprocal) transport between superconducting terminals with broken (preserved) spatial mirror symmetry. We explain our observations by considering a circuit-network of JJs with different critical currents.
References in corpus (22)
- Realization of the field-free Josephson Diode
- A Josephson junction supercurrent diode
- Intrinsic Superconducting Diode Effect
- Supercurrent diode effect and finite momentum superconductivity
- Zero-field superconducting diode effect in small-twist-angle trilayer graphene
- A phenomenological theory of superconductor diodes
- Supercurrent diode effect and magnetochiral anisotropy in few-layer NbSe
- Universal Josephson diode effect
- Theory of the supercurrent diode effect in Rashba superconductors with arbitrary disorder
- Field-free superconducting diode effect in noncentrosymmetric superconductor/ferromagnet multilayers
- General theory of Josephson Diodes
- Gate-tunable Superconducting Diode Effect in a Three-terminal Josephson Device
- Theory of zero-field superconducting diode effect in twisted trilayer graphene
- Demonstration of a superconducting diode-with-memory, operational at zero magnetic field with switchable nonreciprocity
- Magnetic Proximity-Induced Superconducting Diode Effect and Infinite Magnetoresistance in van der Waals Heterostructure
- Non-Reciprocal Supercurrents in a Field-Free Graphene Josephson Triode
- Josephson diode effect derived from short-range coherent coupling
- Selective Control of Conductance Modes in Multi-terminal Josephson Junctions
- Andreev processes in mesoscopic multi-terminal graphene Josephson junctions
- A quantum interferometer for quartets in superconducting three-terminal Josephson junctions
- Superconducting Phase Transistor in Diffusive Four-terminal Ferromagnetic Josephson Junctions
- Proposal for detecting the shifted Cooper quartet supercurrent
Cited by in corpus (13)
- Altermagnetic superconducting diode effect
- Dissipationless Nonlinearity in Quantum Material Josephson Diodes
- Theory of universal diode effect in three-terminal Josephson junctions
- Josephson Diode Effect from Nonequilibrium Current in a Superconducting Interferometer
- Diode effect in the Fraunhofer pattern of disordered planar Josephson junctions
- Ballistic Andreev interferometers
- Nonequilibrium Andreev resonances in ballistic graphene Andreev interferometers
- Enhanced Superconducting Diode Effect in the Asymmetric Hatsugai-Kohmoto Model
- Perturbative Analysis of the Field-Free Josephson Diode Effect in a Multilayered Josephson Junction
- Revisiting the adiabatic limit in ballistic multiterminal Josephson junctions
- Thermodynamic Constraints on Perfect Equilibrium Superconducting Diodes
- Diode effect in microwave irradiated Josephson junctions with Yu-Shiba-Rusinov states
- Spin Josephson diode effect induced by higher-harmonic spin Josephson currents in a diffusive Josephson junction