Family of multilayer graphene superconductors with tunable chirality: Momentum-space vortices nucleated by a ring of Berry curvature
arXiv:2505.21616 · doi:10.1103/pgqh-wm5v
Abstract
Recent experiments in rhombohedrally-stacked multilayer graphene heterostructures have reported signatures of chiral superconductivity, emerging from a spin and valley-polarized normal state with broken time-reversal symmetry and an associated anomalous Hall effect. These findings bring into focus the role of the electronic Bloch wavefunction and the quantum geometric tensor in determining the superconducting pairing channel. In this work, we examine superconducting instabilities of a model of -layer rhombohedral graphene that possesses an enhanced Berry curvature distribution on an extended ring in momentum space that we dub the 'Berry ring of fire' in the presence of an isotropic attractive interaction with a parametrically controlled spatial range. We determine that local interactions favor a -fold winding in the order parameter phase for odd- layered systems, with even- layers requiring a spatially extended attraction range to achieve pairing. For generic interaction lengths, we discover a family of chiral superconductors and, remarkably, momentum-space vortices nucleated on the Berry ring of fire. The existence of these vortices can be traced to a momentum-space flux quantization condition involving the Berry curvature, with the phase winding dictated by a combination of the Berry flux and a 'statistical flux' to enforce Fermi-Dirac statistics. Such an order parameter structure allows for the possibility of in-situ tuning between various chiral superconducting phases through changes in the electron density or the displacement field. We discuss ways in which these predictions can be experimentally tested and potentially exploited in future devices.
11 + 6 pages, 7 + 5 figures
References in corpus (33)
- Signatures of Fractional Quantum Anomalous Hall States in Twisted MoTe2 Bilayer
- Observation of Fractionally Quantized Anomalous Hall Effect
- Integer and fractional Chern insulators in twisted bilayer MoTe2
- Superconductivity in rhombohedral trilayer graphene
- Band Structure of ABC-Stacked Graphene Trilayers
- Isospin magnetism and spin-triplet superconductivity in Bernal bilayer graphene
- Observation of integer and fractional quantum anomalous Hall effects in twisted bilayer MoTe2
- Spin-Orbit Enhanced Superconductivity in Bernal Bilayer Graphene
- Unconventional superconductivity on honeycomb lattice: the theory of Kekule order parameter
- Signatures of Chiral Superconductivity in Rhombohedral Graphene
- Composite Fermi Liquid at Zero Magnetic Field in Twisted MoTe
- Anomalous Hall Crystals in Rhombohedral Multilayer Graphene I: Interaction-Driven Chern Bands and Fractional Quantum Hall States at Zero Magnetic Field
- Zero-field composite Fermi liquid in twisted semiconductor bilayers
- Theory of quantum anomalous Hall phases in pentalayer rhombohedral graphene moiré structures
- Tunable superconductivity in electron- and hole-doped Bernal bilayer graphene
- Superconductivity and quantized anomalous Hall in rhombohedral graphene
- Stability of Anomalous Hall Crystals in multilayer rhombohedral graphene
- Nematicity and Orbital Depairing in Superconducting Bernal Bilayer Graphene with Strong Spin Orbit Coupling
- Anomalous Hall Crystals in Rhombohedral Multilayer Graphene II: General Mechanism and a Minimal Model
- Sublattice structure and topology in spontaneously crystallized electronic states
- Moiré Fractional Chern Insulators III: Hartree-Fock Phase Diagram, Magic Angle Regime for Chern Insulator States, the Role of the Moiré Potential and Goldstone Gaps in Rhombohedral Graphene Superlattices
- Topological chiral superconductivity beyond pairing in a Fermi liquid
- Intravalley spin-polarized superconductivity in rhombohedral tetralayer graphene
- Band Renormalization, Quarter Metals, and Chiral Superconductivity in Rhombohedral Tetralayer Graphene
- Anyon Superconductivity from Topological Criticality in a Hofstadter-Hubbard Model
- Quantum Geometric Kohn-Luttinger Superconductivity
- Doping a fractional quantum anomalous Hall insulator
- Extended quantum anomalous Hall effect in moiré structures: phase transitions and transport
- Spin-polarized superconductivity: order parameter topology, current dissipation, and multiple-period Josephson effect
- Phonons in Electron Crystals with Berry Curvature
- Unconventional Superconductivity arising from Multipolar Kondo Interactions
- -Jellium Model for the Anomalous Hall Crystal
- Nodal pair density waves from a quarter-metal in crystalline graphene multilayers