Publication | Open Access
High optical transmittance of aluminum ultrathin film with hexagonal nanohole arrays as transparent electrode
12
Citations
42
References
2016
Year
Aluminium NitrideOptical MaterialsEngineeringAluminum Ultrathin FilmElectromagnetic MetamaterialsOptical PropertiesTransparent MaterialsAluminum Ultrathin FilmsHexagonal Nanohole ArraysNanolithography MethodNanophotonicsThin Film ProcessingPlasmonic MaterialMaterials SciencePhysicsNanotechnologyTransparent ElectrodePlasmonicsTransmission PerformanceApplied PhysicsNanofabricationThin FilmsOptoelectronics
We fabricate samples of aluminum ultrathin films with hexagonal nanohole arrays and characterize the transmission performance. High optical transmittance larger than 60% over a broad wavelength range from 430 nm to 750 nm is attained experimentally. The Fano-type resonance of the excited surface plasmon plaritons and the directly transmitted light attribute to both of the broadband transmission enhancement and the transmission suppression dips.
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