Twist-Tuned Magnonic Nanocavity Mode in a Trilayer Moiré Superlattice
arXiv:2603.19729 · doi:10.1021/acsnano.6c09646
Abstract
The concept of moiré superlattices has recently been introduced into the field of magnonics, enabling unprecedented control over spin-wave propagation and confinement in nanoscale magnonic devices. In this work, we report a numerical investigation on the nanocavity in a trilayer magnetic moiré superlattice structure consisting of antidot lattices. By tuning the middle layer twist angle, high tunability of the magnonic band structure can be achieved with characteristic flat bands and the corresponding nanocavity mode formation in outer layers. At an optimal twist angle of 3 deg, excitation at the flat band frequency yields nanocavity mode with linewidth of 175 nm. In contrast to its bilayer counterpart, the trilayer magnonic moiré superlattice exhibits antiphase nanocavity modes in the outer layers while showing no nanocavity formation in the middle layer. Our study indicates that the switching and distribution of the nanocavity modes can be governed by tuning the middle layer twist angle with a strong magnon intensity confinement. The trilayer magnonic moiré structure holds a distinct advantage in tunability, which opens up new avenues for the design of future moiré magnonic devices.
References in corpus (21)
- Tunable Phase Boundaries and Ultra-Strong Coupling Superconductivity in Mirror Symmetric Magic-Angle Trilayer Graphene
- Evidence of high-temperature exciton condensation in 2D atomic double layers
- Electric field tunable unconventional superconductivity in alternating twist magic-angle trilayer graphene
- Competing zero-field Chern insulators in Superconducting Twisted Bilayer Graphene
- Superconductivity and strong interactions in a tunable moiré quasiperiodic crystal
- Twisted Trilayer Graphene: a Precisely Tunable Platform for Correlated Electrons
- The Quantum Twisting Microscope
- Stacking Domain Wall Magnons in Twisted van der Waals Magnets
- Emulating heavy fermions in twisted trilayer graphene
- Correlated insulators, semimetals, and superconductivity in twisted trilayer graphene
- Higher-order van Hove singularity in magic-angle twisted trilayer graphene
- Moiré magnons in twisted bilayer magnets with collinear order
- Topological characterization of classical waves: the topological origin of magnetostatic surface spin waves
- Symmetry Origin of Lattice Vibration Modes in Twisted Multilayer Graphene: Phasons vs Moiré Phonons
- Magnonic band structure in vertical meander-shaped CoFeB thin films
- Commensurate and incommensurate double moiré interference in twisted trilayer graphene
- Moire Band Structures of the Double twisted Few Layer Graphene
- Observation of spin-wave moiré edge and cavity modes in twisted magnetic lattices
- Visualization of moiré magnons in monolayer ferromagnet
- Heteromoiré Engineering on Magnetic Bloch Transport in Twisted Graphene Superlattices
- Frequency comb in twisted magnonic crystals