Non-Abelian topological superconductivity in maximally twisted double-layer spin-triplet valley-singlet superconductors
arXiv:2206.05599 · doi:10.1038/s42005-023-01165-5
Abstract
Recent theoretical and experimental studies point to a novel spin-triplet valley-singlet (STVS) superconducting phase in certain two-valley electron liquids, including rhombohedral trilayer graphene, Bernal bilayer graphene and ZrNCl. This fully gapped phase is exotic in that it combines into Cooper pairs same-spin electrons from valleys centered around the opposing corners of a hexagonal Brillouin zone, but is, nevertheless, topologically trivial. Here, we predict that upon stacking two layers of an STVS material with an angular twist, a novel chiral topological phase -- an -wave superconductor -- emerges in the vicinity of the `maximal' twist angle of 30 where the system becomes an extrinsic quasi-crystal with 12-fold tiling. The resulting composite is a non-Abelian topological superconductor (TSC) with an odd number of chiral Majorana modes at its edges and a single Majorana zero mode (MZM) localized in the vortex core. Through symmetry analysis and detailed microscopic modelling based on a novel quasi-crystal band structure technique, we demonstrate that the non-Abelian TSC forms when the isolated Fermi pockets coalesce into a single connected Fermi surface around the center of the moiré Brillouin zone and is stable over a wide range of electron density. We further discuss how the energetics leading to the -wave phase results in anomalous -periodic inter-layer Josephson effect, which can serve as a distinctive signature of the chiral phase. Distinct from the valley-preserving moiré physics in small-angle twisted graphene, our results establish the large-angle moiré physics arising near maximal twist as a new avenue toward intrinsic TSC with non-Abelian excitations.
12 + 19 pages, 5 + 6 figures. Texts and supplementary information(SI) revised, with discussions added to highlight the connection between non-Abelian topological superconductivity and a new type of large-angle moire physics. Detailed analysis on other pairing channels presented in revised SI. Comments are welcome
References in corpus (21)
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Classification of topological insulators and superconductors in three spatial dimensions
- Observation of Majorana Fermions in Ferromagnetic Atomic Chains on a Superconductor
- Scanning tunneling spectroscopy of high-temperature superconductors
- Colloquium: Majorana Fermions in nuclear, particle and solid-state physics
- Superconductivity in rhombohedral trilayer graphene
- Isospin magnetism and spin-triplet superconductivity in Bernal bilayer graphene
- Classification of reflection symmetry protected topological semimetals and nodal superconductors
- High-temperature topological superconductivity in twisted double layer copper oxides
- Gate-controlled BCS-BEC crossover in a two-dimensional superconductor
- Quasicrystalline electronic states in 30 rotated twisted bilayer graphene
- Inter-valley coherent order and isospin fluctuation mediated superconductivity in rhombohedral trilayer graphene
- Unconventional superconductivity in systems with annular Fermi surfaces: Application to rhombohedral trilayer graphene
- Acoustic-phonon-mediated superconductivity in rhombohedral trilayer graphene
- Acoustic-phonon-mediated superconductivity in Bernal bilayer graphene
- Metals, fractional metals, and superconductivity in rhombohedral trilayer graphene
- Emergent Interfacial Superconductivity between Twisted Cuprate Superconductors
- High-Angular-Momentum Topological Superconductivity in the Largest-Angle Twisted Homo-bilayer Systems
- Moiré flat Chern bands and correlated quantum anomalous Hall states generated by spin-orbit couplings in twisted homobilayer MoS
- Chiral -wave superconductivity in a twisted array of proximitized quantum wires
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- Making Chiral Topological Superconductivities from Non-topological Superconductivities Through the Twist
- Twisted Nodal Superconductors
- Inducing Topology in Twisted Nodal Superconductors
- Floquet engineering of effective pairing interactions in a doped band insulator