Observation of Gigahertz Topological Valley Hall Effect in Nanoelectromechanical Phononic Crystals
arXiv:2202.02412 · doi:10.1038/s41928-022-00732-y
Abstract
Topological phononics offers numerous opportunities in manipulating elastic waves that can propagate in solids without being backscattered. Due to the lack of nanoscale imaging tools that aid the system design, however, acoustic topological metamaterials have been mostly demonstrated in macroscale systems operating at low (kilohertz to megahertz) frequencies. Here, we report the realization of gigahertz topological valley Hall effect in nanoelectromechanical AlN membranes. Propagation of elastic wave through phononic crystals is directly visualized by microwave microscopy with unprecedented sensitivity and spatial resolution. The valley Hall edge states, protected by band topology, are vividly seen in both real- and momentum-space. The robust valley-polarized transport is evident from the wave transmission across local disorder and around sharp corners, as well as the power distribution into multiple edge channels. Our work paves the way to exploit topological physics in integrated acousto-electronic systems for classical and quantum information processing in the microwave regime.
17 pages, 5 figures
References in corpus (7)
- Topological Photonics
- The Valley Hall Effect in MoS2 Transistors
- Topological Acoustics
- Observation of phononic helical edge states in a mechanical 'topological insulator'
- Observation of topological valley transport of sound in sonic crystals
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- Evanescently coupled topological ring-waveguide systems for chip-scale ultrahigh frequency phononic circuits
- A soft-clamped topological waveguide for phonons
- Nanoscale Imaging of Super-High-Frequency Microelectromechanical Resonators with Femtometer Sensitivity
- Deployable Nanoelectromechanical Bound States in the Continuum Enabled by GHz Lamb Wave Phononic Crystals on LiNbO3 Thin Films
- Canonical scattering problem in topological metamaterials: Valley-Hall modes through a bend
- Towards tunable graphene phononic crystals
- Klein Tunneling of Gigahertz Elastic Waves in Nanoelectromechanical Metamaterials
- Boundary-induced helical bulk acoustic transport in LiNbO3 thin films
- On-chip cavity electro-acoustics using lithium niobate phononic crystal resonators
- Tunneling-induced fractal transmission in Valley Hall waveguides