Graph explorer

Active Nonlocal Metasurfaces

Actively tunable and reconfigurable wavefront shaping by optical metasurfaces poses a significant technical challenge often requiring unconventional materials engineering and nanofabrication. Most wavefront-shaping metasurfaces can be considered 'local' in that their operation depends on the responses of individual meta-units. In contrast, 'nonlocal' metasurfaces function based on the modes supported by many adjacent meta-units, resulting in sharp spectral features but typically no spatial control of the outgoing wavefront. Recently, nonlocal metasurfaces based on quasi-bound states in the continuum have been shown to produce designer wavefronts only across the narrow bandwidth of the supported Fano resonance. Here, we leverage the enhanced light-matter interactions associated with sharp Fano resonances to explore the active modulation of optical spectra and wavefronts by refractive index tuning and mechanical stretching. We experimentally demonstrate proof-of-principle thermo-optically tuned nonlocal metasurfaces made of silicon, and numerically demonstrate nonlocal metasurfaces that thermo-optically switch between distinct wavefront shapes. This meta-optics platfo

7 nodes7 linksoverview previewActive Nonlocal Metasurfaces
7 nodes7 links
Active Nonlocal Metasurfaces7 visible / 7 total nodes / 13 links
Co-authorshipCo-authorshipCo-authorshipCo-authorshipCo-authorshipCo-authorshipRelated contextAuthorshipAuthorshipAuthorshipAuthorshipTopic signalTopic signalWActive Nonlocal Metasurfacespreprint / 2020AStephanie C. MalekResearcherAAdam C. OvervigResearcherASajan ShresthaResearcherANanfang YuResearcherTphysics.optics7109 worksTphysics.app-ph5059 works
PaperSignal 106 links

Active Nonlocal Metasurfaces

preprint / 2020

Open