Current-induced re-entrant superconductivity and extreme nonreciprocal superconducting diode effect in valley-polarized systems
arXiv:2501.00835 · doi:10.21468/SciPostPhys.20.1.021
Abstract
The superconducting diode effect (SDE) refers to the nonreciprocity of superconducting critical currents. Generally, the SDE has a positive and a negative critical currents jc+- corresponding to two opposite directions with unequal amplitudes. It is demonstrated that an extreme nonreciprocity where two critical currents can become both positive (or negative) has been observed in twisted graphene systems. In this work, we theoretically propose a possible mechanism to realize an extreme nonreciprocal SDE. Based on a simple microscopic model, we demonstrate that depairing currents required to dissolve Cooper pairs can be remodulated under the interplay between valley polarizations and applied currents. Near the disappearance of the superconductivity, the remodulation is shown to induce extreme nonreciprocity and also the current-induced re-entrant superconductivity where the system has two different critical current intervals. Our study may provide new horizons for understanding the coexistence of superconductivity and spontaneous valley polarizations, and pave a way for designing SDE with 100% efficiency
32 pages, 11 figures
References in corpus (56)
- Magic-angle graphene superlattices: a new platform for unconventional superconductivity
- Coupled spin and valley physics in monolayers of MoS2 and other group-VI dichalcogenides
- Correlated Insulator Behaviour at Half-Filling in Magic Angle Graphene Superlattices
- Emergent ferromagnetism near three-quarters filling in twisted bilayer graphene
- Intrinsic quantized anomalous Hall effect in a moiré heterostructure
- Superconducting Spintronics
- Quantum information processing with superconducting circuits: a review
- Maximally-localized Wannier orbitals and the extended Hubbard model for the twisted bilayer graphene
- Cascade of Phase Transitions and Dirac Revivals in Magic Angle Graphene
- Realization of the field-free Josephson Diode
- A Josephson junction supercurrent diode
- Isospin magnetism and spin-triplet superconductivity in Bernal bilayer graphene
- Nematicity and Competing Orders in Superconducting Magic-Angle Graphene
- Half and quarter metals in rhombohedral trilayer graphene
- Intrinsic Superconducting Diode Effect
- Supercurrent diode effect and finite momentum superconductivity
- Model for Metal-Insulator Transition in Graphene Superlattices and Beyond
- 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
- Theory of the supercurrent diode effect in Rashba superconductors with arbitrary disorder
- Superconductivity and Ferromagnetism in Oxide Interface Structures: Possibility of Finite Momentum Pairing
- Field-free superconducting diode effect in noncentrosymmetric superconductor/ferromagnet multilayers
- Superconducting diode effect via conformal-mapped nanoholes
- Quantum cascade of new correlated phases in trigonally warped bilayer graphene
- Inhomogeneous LOFF phase revisited for surface superconductivity
- Diode effect in Josephson junctions with a single magnetic atom
- Giant Orbital Magneto-electric effect and Current-driven Magnetization Switching in Twisted Bilayer Graphene
- Theory of zero-field superconducting diode effect in twisted trilayer graphene
- Nonreciprocal current in noncentrosymmetric Rashba superconductors
- Josephson Diode Effect in High Mobility InSb Nanoflags
- Gate-Defined Josephson Junctions in Magic-Angle Twisted Bilayer Graphene
- Josephson Diode Effect Induced by Valley Polarization in Twisted Bilayer Graphene
- Spin-orbit coupling induced valley Hall effects in transition-metal dichalcogenides
- Superconducting spintronic tunnel diode
- Low field hysteresis in disordered ferromagnets
- Band Structure and Superconductivity in Twisted Trilayer Graphene
- Topological metals and finite-momentum superconductors
- Enhanced Superconducting Diode Effect due to coexisting Phases
- Josephson diode based on conventional superconductors and a chiral quantum dot
- Coexistence of electron whispering-gallery modes and atomic collapse states in graphene WSe2 heterostructure quantum dots
- Universal spin superconducting diode effect from spin-orbit coupling
- Orbital hybridization in graphene-based artificial atoms
- Current-induced reversal of anomalous Hall conductance in twisted bilayer graphene
- Angle-resolved transport nonreciprocity and spontaneous symmetry breaking in twisted trilayer graphene
- Supercurrent rectification with time-reversal symmetry broken multiband superconductors
- Magnetic field-tunable valley-contrasting pseudomagnetic confinement in graphene
- -Josephson junction in twisted bilayer graphene induced by a valley-polarized state
- Current Driven Magnetization Reversal in Orbital Chern Insulators
- Design of Josephson diode based on magnetic impurity
- Current Switching of Valley Polarization in Twisted Bilayer Graphene
- Pairing patterns in one-dimensional spin- and mass-imbalanced Fermi gases
- Engineered Josephson diode effect in kinked Rashba nanochannels
- Theory of universal diode effect in three-terminal Josephson junctions
- Design of a Josephson diode based on double magnetic impurities
- Probing valley phenomena with gate-defined valley splitters