arXiv · 2502.08204
Mechano-optical metasurfaces
Abstract
Tunable metasurfaces enable active and on-demand control over optical wavefronts through reconfigurable scattering of resonant nanostructures. Here, we present novel insights inspired by mechanical metamaterials to achieve giant tunability in mechano-optical metasurfaces where the mechanical metamaterial and optical metasurfaces are integrated in a single nanopatterned material. In a first design, judiciously engineered cuts in a flexible substrate enable large, strain-induced extension of the inter-particle spacing, tuning a high quality-factor resonance in a silicon nanoparticle array across a very broad spectral range. In a second design, we eliminate the substrate and demonstrate a nanopatterned silicon membrane that simultaneously functions as a mechanical metamaterial and an optical metasurface with large tunability. Our results highlight a promising route toward active metasurfaces, with potential applications in tunable filters, reconfigurable lenses, and dynamic wavefront shaping.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Freek van Gorp, Wenfeng Liu, Corentin Coulais, Jorik van de Groep. 2025-02-12. Mechano-optical metasurfaces. https://doi.org/10.1021/acsphotonics.5c01385
Cite the original work for its findings. Save a collection to share your selection of sources.