Topological multiferroic order in twisted transition metal dichalcogenide bilayers
arXiv:2204.03360 · doi:10.21468/SciPostPhys.13.3.052
Abstract
Layered van der Waals materials have risen as powerful platforms to artificially engineer correlated states of matter. Here we show the emergence of a multiferroic order in a twisted dichalcogenide bilayer superlattice at quarter-filling. We show that the competition between Coulomb interactions leads to the simultaneous emergence of ferrimagnetic and ferroelectric orders. We derive the magnetoelectric coupling for this system, which leads to a direct strong coupling between the charge and spin orders. We show that, due to intrinsic spin-orbit coupling effects, the electronic structure shows a non-zero Chern number, thus displaying a topological multiferroic order. We show that this topological state gives rise to interface modes at the different magnetic and ferroelectric domains of the multiferroic. We demonstrate that these topological modes can be tuned with external electric fields as well as triggered by supermoire effects generated by a substrate. Our results put forward twisted van der Waals materials as a potential platform to explore multiferroic symmetry breaking orders and, ultimately, controllable topological excitations in magnetoelectric domains.
Submission to SciPost, 6 figures
References in corpus (25)
- Flat Bands in Slightly Twisted Bilayer Graphene
- Tunable Phase Boundaries and Ultra-Strong Coupling Superconductivity in Mirror Symmetric Magic-Angle Trilayer Graphene
- Moiré heterostructures as a condensed matter quantum simulator
- Quantum anomalous Hall effect from intertwined moiré bands
- Strongly Correlated Chern Insulators in Magic-Angle Twisted Bilayer Graphene
- Evidence for a single-layer van der Waals multiferroic
- Continuous Mott transition in semiconductor moiré superlattices
- Electrical switching of magnetic order in an orbital Chern insulator
- Correlated Insulating States at Fractional Fillings of the WS2/WSe2 Moiré Lattice
- Quantum Criticality in Twisted Transition Metal Dichalcogenides
- Electrically tunable correlated and topological states in twisted monolayer-bilayer graphene
- Tuning electron correlation in magic-angle twisted bilayer graphene using Coulomb screening
- Stripe phases in WSe2/WS2 moiré superlattices
- -Valley Transition-Metal-Dichalcogenide Moirè Bands
- Twistons in a Sea of Magic
- Composite super-moiré lattices in double aligned graphene heterostructures
- Electronic structures, charge transfer and charge orders in twisted transition metal dichalcogenide bilayers
- Possible persistence of multiferroic order down to bilayer limit of van der Waals material NiI
- Double moiré with a twist: super-moiré in encapsulated graphene
- Microscopic origin of multiferroic order in monolayer NiI
- Multi-ultraflatbands tunability and effect of spin-orbit coupling in twisted bilayer transition metal dichalcogenides
- Electronic localization in twisted bilayer MoS with small rotation angle
- Competing magnetic states in transition metal dichalcogenide moiré materials
- Tuning band gaps in twisted bilayer MoS
- Spin-orbit correlations and exchange-bias control in twisted Janus dichalcogenide multilayers
Cited by in corpus (9)
- Atomic-scale visualization of multiferroicity in monolayer NiI
- Interaction-driven topological phase diagram of twisted bilayer MoTe
- Moiré-driven multiferroic order in twisted CrCl, CrBr and CrI bilayers
- Gate-tunable antiferromagnetic Chern insulator in twisted bilayer transition metal dichalcogenides
- Bridging the small and large in twisted transition metal dicalcogenide homobilayers: a tight binding model capturing orbital interference and topology across a wide range of twist angles
- Multiferroicity and Topology in Twisted Transition Metal Dichalcogenides
- Twist-angle evolution of the intervalley-coherent antiferromagnet in twisted WSe
- Electric field control of moiré skyrmion phases in twisted multiferroic NiI bilayers
- Tensor network method for real-space topology in quasicrystal Chern mosaics