Litcius/Paper detail

All-dielectric metasurface designs for spin-tunable beam splitting via simultaneous manipulation of propagation and geometric phases

Ata Ur Rahman Khalid, Fu Feng, Muhammad Ismail Khan, Xiaocong Yuan, Michael Geoffrey Somekh

2022Optics Express21 citationsDOIOpen Access PDF

Abstract

Metasurfaces offer diverse wavefront control by manipulating amplitude, phase, and polarization of light which is beneficial to design subwavelength scaled integrated photonic devices. Metasurfaces based tunable circular polarization (CP) beam splitting is one functionality of interest in polarization control. Here, we propose and numerically realize metasurface based spin tunable beam splitter which splits the incoming CP beam into two different directions and tune the splitting angles by switching the handedness of incident light polarization. The proposed design approach has potential in applications such as optical communication, multiplexing, and imaging.

Topics & Concepts

OpticsBeam splitterWavefrontPolarization (electrochemistry)PhysicsLight beamMetamaterialCircular polarizationBeam (structure)PhotonicsBeam steeringCollimated lightOptoelectronicsLaser beamsGeometrical opticsNegative refractionPhotonic metamaterialTransformation opticsElectron-beam lithographyOptical switchOptical filterBeam expanderPhotonic crystalSplit-ring resonatorPhysical opticsRayOptical circulatorRadial polarizationMaterials sciencePhase modulationStructured lightRefractive indexSplitterIntegrated opticsMetamaterials and Metasurfaces ApplicationsPlasmonic and Surface Plasmon ResearchOrbital Angular Momentum in Optics