Dissipation-enhanced non-reciprocal superconductivity: application to multi-valley superconductors
arXiv:2501.01501 · doi:10.1103/n681-k9dl
Abstract
We here propose and study theoretically a non-equilibrium mechanism for the superconducting diode effect, which applies specifically to the case where time-reversal-symmetry -- a prerequisite for the diode effect -- is spontaneously broken by the superconducting electrons themselves. We employ a generalized time-dependent Ginzburg-Landau formalism to capture dissipation effects in the non-equilibrium current-carrying state via phase slips and show that the coupling of the resistive current to the symmetry-breaking order is enough to induce a diode effect. Depending on parameters, the critical current asymmetry can be sizeable, asymptotically reaching a perfect diode efficiency; the competition of symmetry-breaking order, superconducting and resistive currents gives rise to rich physics, such as current-stabilized, non-equilibrium superconducting correlations. Although our mechanism is more general, the findings are particularly relevant to twisted trilayer and rhombohedral tetralayer graphene, where the symmetry-breaking order parameter refers to the imbalance of the two valleys of the systems.
References in corpus (40)
- Emergent ferromagnetism near three-quarters filling in twisted bilayer graphene
- Intrinsic quantized anomalous Hall effect in a moiré heterostructure
- Realization of the field-free Josephson Diode
- A Josephson junction supercurrent 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
- 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
- Superconducting diode effect via conformal-mapped nanoholes
- General theory of Josephson Diodes
- Theory of zero-field superconducting diode effect in twisted trilayer graphene
- Josephson Diode Effect in High Mobility InSb Nanoflags
- Demonstration of a superconducting diode-with-memory, operational at zero magnetic field with switchable nonreciprocity
- Altermagnetic superconducting diode effect
- 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
- Condition of the occurrence of phase slip centers in superconducting nanowires under applied current or voltage
- Hybrid helical state and superconducting diode effect in S/F/TI heterostructures
- Symmetry conditions for the superconducting diode effect in chiral superconductors
- Microscopic study of the Josephson supercurrent diode effect in Josephson junctions based on two-dimensional electron gas
- Superconducting diode effect and nonreciprocal transition lines
- Pair-density-wave and chiral superconductivity in twisted bilayer transition-metal-dichalcogenides
- Enhancing the Josephson diode effect with Majorana bound states
- Field-free anomalous junction and superconducting diode effect in spin split superconductor/topological insulator junctions
- Enhanced Superconducting Diode Effect due to coexisting Phases
- Gate-tunable Josephson diode effect in Rashba spin-orbit coupled quantum dot junctions
- Prediction of ferroelectric superconductors with reversible superconducting diode effect
- Tuning the Josephson diode response with an ac current
- Supercurrent Diode Effect in Helical Superconductors
- Field-free superconducting diode in a magnetically nanostructured superconductor
- Anomalous superconducting diode effect in a polar superconductor
- Current Switching of Valley Polarization in Twisted Bilayer Graphene
- Superconducting diodes from magnetization gradients
- Nonreciprocal superconducting transport and the spin Hall effect in gyrotropic structures
- Superconducting Diode Effect in Multiphase Superconductors
- Optimizing one dimensional superconducting diodes: Interplay of Rashba spin-orbit coupling and magnetic fields
- Harnessing the superconducting diode effect through inhomogeneous magnetic fields