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Optical Tamm state and giant asymmetry of light transmission through an array of nanoholes
21
Citations
23
References
2015
Year
Quantum PhotonicsEngineeringNano-opticsLight TransmissionWave OpticPhotonic CrystalsElectromagnetic MetamaterialsOptical PropertiesOptical Tamm StateNanophotonicsQuantum SciencePhotonicsMetal FilmPhysicsPhotonic DeviceOptical PhysicApplied PhysicsGiant AsymmetryDynamic MetamaterialsOptoelectronics
We have predicted theoretically and verified experimentally the occurrence of a giant asymmetry of the transmission of arbitrarily polarized light propagating through a linear nonmagnetic optical system that consists of a metal film with a two-dimensional array of nanoholes in it and that is deposited on the surface of a planar dielectric photonic crystal. The asymmetry of the light transmission is caused by two factors: (i) the excitation of an optical Tamm state in the system, and (ii) the existence of many secondary lobes in the diffraction pattern. Our results are of interest for the development of efficient planar optical diodelike systems and related nanophotonic devices.
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