Publication | Open Access
Ultra-high extinction ratio micropolarizers using plasmonic lenses
15
Citations
22
References
2011
Year
Optical MaterialsEngineeringNew TypeMetamaterialsMicro-optical ComponentElectromagnetic MetamaterialsMagnetoplasmonicsOptical PropertiesGuided-wave OpticOptical SystemsPlanar Waveguide SensorPolarization ResponseNanophotonicsPhotonicsPlasmonic LensesPhysicsTransmission FilterElectro-optics DevicePlasmonicsNatural SciencesApplied Physics
The design of a new type of plasmonic ultra-high extinction ratio micropolarizing transmission filter is presented along with an experimental demonstration. A pair of dielectric coated metal gratings couple incident TM polarized light into surface plasmons, which are fed into a central metal-insulator-metal (MIM) waveguide, followed by transmission through a sub-wavelength aperture. Extinction ratios exceeding 10¹¹ are predicted by finite element simulation. Good absolute agreement for both the spectral and polarization response is obtained between measurement and simulations using measured geometric parameters. The filters can be easily fabricated and sized to match the pixel pitch of current focal plane arrays.
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