Publication | Closed Access
Spectral Modulation through the Hybridization of Mie-Scatterers and Quasi-Guided Mode Resonances: Realizing Full and Gradients of Structural Color
155
Citations
51
References
2020
Year
Quasi-guided Mode ResonancesSpectral ModulationOptical MaterialsEngineeringNano-opticsNegative-index MetamaterialMetasurfacesMetamaterialsElectromagnetic MetamaterialsFull Color PrintingOptical PropertiesNanophotonicsPhotonicsFundamental Mie ResonancesPhysicsLattice ResonancesMetaopticsPlasmonicsStructural ColorApplied PhysicsDynamic Metamaterials
Metasurfaces made up of subwavelength arrays of Mie scatterers can be engineered to control the optical properties of incident light. The hybridization of the fundamental Mie resonances with lattice resonances greatly enhances the scattering cross-section of individual Mie scatterers. Through careful design of the locations of these hybridized modes using two differently engineered hydrogenated amorphous silicon nanorods, we numerically calculate and experimentally fabricate two examples of full color printing; one with spectral colors comparable to the Adobe RGB gamut, and another with gradients of color. We identify and characterize the mechanisms behind each and provide a framework that can be used to design any all-dielectric metasurfaces of subwavelength Mie scatterers for spectral modulation.
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