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Trapping waves with terahertz metamaterial absorber based on isotropic Mie resonators
61
Citations
31
References
2015
Year
Materials SciencePlasmonicsPeriodic Hexagonal NetworkEngineeringTerahertz Metamaterial AbsorberPhysicsIsotropic Mie ResonatorsOptical PropertiesNegative-index MetamaterialApplied PhysicsMetamaterialsMetamaterial AbsorberComputational ElectromagneticsDynamic MetamaterialsTerahertz PhotonicsQuasi-monodisperse Dielectric ParticlesElectromagnetic Metamaterials
Quasi-monodisperse dielectric particles organized in a periodic hexagonal network on an aluminum surface are exploited numerically and experimentally as a single-layered near-perfect absorber in the terahertz regime. Of particular interest are titanium dioxide (TiO(2)) microspheres because of their large dielectric permittivity and isotropic shape leading to Mie resonances with insensitive polarization. Absorption higher than 80% at normal incidence covering two distinct ranges of frequencies is demonstrated experimentally. Furthermore, the performance of the metamaterial absorber is kept over a wide range of incident angles.
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