Intrinsic Superconducting Diode Effect
arXiv:2106.03326 · doi:10.1103/PhysRevLett.128.037001
Abstract
Stimulated by the recent experiment [F. Ando et al., Nature 584, 373 (2020)], we propose an intrinsic mechanism to cause the superconducting diode effect (SDE). SDE refers to the nonreciprocity of the critical current for the metal-superconductor transition. Among various mechanisms for the critical current, the depairing current is known to be intrinsic to each material and has recently been observed in several superconducting systems. We clarify the temperature scaling of the nonreciprocal depairing current near the critical temperature and point out its significant enhancement at low temperatures. It is also found that the nonreciprocal critical current shows sign reversals upon increasing the magnetic field. These behaviors are understood by the nonreciprocity of the Landau critical momentum and the change in the nature of the helical superconductivity. The intrinsic SDE unveils the rich phase diagram and functionalities of noncentrosymmetric superconductors.
5+4 pages, 8 figures
References in corpus (12)
- Fulde-Ferrell-Larkin-Ovchinnikov State in Heavy Fermion Superconductors
- A Josephson junction supercurrent diode
- Field-induced superconducting phase of FeSe in the BCS-BEC cross-over
- Anomalous Josephson effect induced by spin-orbit interaction and Zeeman effect in semiconductor nanowires
- Anomalous Josephson Current in Junctions with Spin-Polarizing Quantum Point Contacts
- Superconducting diode effect via conformal-mapped nanoholes
- Theory of 2D superconductor with broken inversion symmetry
- Spin Orbit coupling and Anomalous Josephson effect in Nanowires
- Geometry controlled superconducting diode and anomalous Josephson effect triggered by the topological phase transition in curved proximitized nanowires
- Upper critical field in noncentrosymmetric superconductors
- Emergent exotic superconductivity in artificially-engineered tricolor Kondo superlattices
- Controlling unconventional superconductivity in artificially engineered -electron Kondo superlattices
Cited by in corpus (58)
- Realization of the field-free Josephson Diode
- 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
- Ubiquitous Superconducting Diode Effect in Superconductor Thin Films
- Theory of the supercurrent diode effect in Rashba superconductors with arbitrary disorder
- The Josephson diode effect in supercurrent interferometers
- Field-free superconducting diode effect in noncentrosymmetric superconductor/ferromagnet multilayers
- General theory of Josephson Diodes
- Theory of zero-field superconducting diode effect in twisted trilayer graphene
- Asymmetric higher-harmonic SQUID as a Josephson diode
- Superconducting diode effect due to magnetochiral anisotropy in topological insulator and Rashba nanowires
- Theory of diode effect in d-wave superconductor junctions on the surface of topological insulator
- Josephson Diode Effect Induced by Valley Polarization in Twisted Bilayer Graphene
- Tunable Josephson diode effect on the surface of topological insulators
- High-temperature Josephson diode
- Diamagnetic mechanism of critical current non-reciprocity in multilayered superconductors
- Hybrid helical state and superconducting diode effect in S/F/TI heterostructures
- Magnetic Proximity-Induced Superconducting Diode Effect and Infinite Magnetoresistance in van der Waals Heterostructure
- Symmetry conditions for the superconducting diode effect in chiral superconductors
- Superconducting diode effect and nonreciprocal transition lines
- Pair-density-wave and chiral superconductivity in twisted bilayer transition-metal-dichalcogenides
- Diode effects in current-biased Josephson junctions
- Field-free anomalous junction and superconducting diode effect in spin split superconductor/topological insulator junctions
- Sign reversal of the AC and DC supercurrent diode effect and 0--like transitions in ballistic Josephson junctions
- Non-Reciprocal Supercurrents in a Field-Free Graphene Josephson Triode
- Parity protected superconducting diode effect in topological Josephson junctions
- Dissipation and geometry in nonlinear quantum transports of multiband electronic systems
- Phase Asymmetry of Andreev Spectra From Cooper-Pair Momentum
- Prediction of ferroelectric superconductors with reversible superconducting diode effect
- The supercurrent diode effect and nonreciprocal paraconductivity due to the chiral structure of nanotubes
- Supercurrent diode effect in thin film Nb tracks
- Quantum-geometry-induced anapole superconductivity
- Field-Effect Josephson Diode via Asymmetric Spin-Momentum-Locking States
- High-frequency diode effect in superconducting NbSn micro-bridges
- Pair density wave and loop current promoted by van Hove singularities in moiré systems
- Orbital Fulde-Ferrell pairing state in moiré Ising superconductors
- Nonlinear optical responses in noncentrosymmetric superconductors
- Supercurrent-induced topological phase transitions
- Spontaneous superconducting diode effect in non-magnetic Nb/Ru/SrRuO topological junctions
- Nonreciprocal Meissner response in parity-mixed superconductors
- Nonlinear -model for disordered systems with intrinsic spin-orbit coupling
- Piezoelectric effect and diode effect in anapole and monopole superconductors
- Magnetic-field-free nonreciprocal transport in graphene multi-terminal Josephson junctions
- Proximity-induced equilibrium supercurrent and perfect superconducting diode effect due to band asymmetry
- Interface superconductivity in a type-II Dirac semimetal NiTe
- Evidence of 0-Josephson junction from skewed diffraction patterns in Sn-InSb nanowires
- Anatomy of Spin and Current Generation from Magnetization Gradients in Topological Insulators and Rashba Metals
- Kramers Fulde-Ferrell state and superconducting spin diode effect
- Interplay between the extended s-wave symmetry of the gap and the spin-orbit coupling in the low-electron concentration regime of quasi-two-dimensional superconductors
- Supercurrent-Induced Weyl Superconductivity
- Quadristor: a novel device for superconducting electronics
- Reducing the frequency of the Higgs mode in a helical superconductor coupled to an LC-circuit
- Temperature tuned Fermi surface topology and segmentation in non-centrosymmetric superconductors
- Acoustic spin current generation in superconductors
- Current-induced re-entrant superconductivity and extreme nonreciprocal superconducting diode effect in valley-polarized systems