Publication | Open Access
Invited Article: Broadband highly efficient dielectric metadevices for polarization control
389
Citations
26
References
2016
Year
Optical MaterialsEngineeringNegative-index MetamaterialMetasurfacesMetamaterialsGeneralized Huygens PrincipleElectromagnetic MetamaterialsQuantum MetamaterialsMagnetoplasmonicsOptical PropertiesOptical SystemsNanophotonicsPhotonicsElectrical EngineeringPhotonic MaterialsOptical AntennasEfficient Polarization ManipulationMetaopticsPolarization ImagingPlasmonicsApplied PhysicsFunctional Flat OpticsPolarization ControlNanofabricationDynamic Metamaterials
Metadevices based on dielectric nanostructured surfaces with both electric and magnetic Mie-type resonances have resulted in the best efficiency to date for functional flat optics with only one disadvantage: a narrow operational bandwidth. Here we experimentally demonstrate broadband transparent all-dielectric metasurfaces for highly efficient polarization manipulation. We utilize the generalized Huygens principle, with a superposition of the scattering contributions from several electric and magnetic multipolar modes of the constituent meta-atoms, to achieve destructive interference in reflection over a large spectral bandwidth. By employing this novel concept, we demonstrate reflectionless (∼90% transmission) half-wave plates, quarter-wave plates, and vector beam q-plates that can operate across multiple telecom bands with ∼99% polarization conversion efficiency.
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