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Polarization Converter with Controllable Birefringence Based on Hybrid All-Dielectric-Graphene Metasurface

dc.contributor.authorOwiti, Edgar O
dc.contributor.authorYang, Hanning
dc.contributor.authorLiu, Peng
dc.contributor.authorOminde, Calvine F
dc.date.accessioned2019-05-06T11:51:47Z
dc.date.available2019-05-06T11:51:47Z
dc.date.issued2018
dc.description.abstractPrevious studies on hybriddielectric-graphenemetasurfaceshavebeenusedtoimplementinducedtransparency devices,while exhibiting high Q-factors based on trapped magnetic resonances.Typically,the transparencywindows are singlewavelengthandlessappropriateforpolarizationconversionstructures.Inthiswork,aquarter-waveplate based onahybridsilicon-graphenemetasurfacewithcontrollablebirefringenceisnumericallydesigned.The phenomena oftrappedmagneticmoderesonanceandhighQ-factorsaremodulatedbyinsertinggraphenebetween silicon andsilica.Thisresultsinabroadertransmissionwavelengthincomparisontotheall-dielectricstructure without graphene.ThebirefringencetunabilityisbasedonthedimensionsofsiliconandtheFermienergyof graphene.Consequently,alinear-to-circularpolarizationconversionisachievedatahighdegreeof96%,inthe near-infrared.Moreover,the polarization state of the scattered light is switch able between right and left hand circular polarizations,based on an external gate biasing voltage.Unlike in plasmonic metasurfaces,these achievements demonstrate an efficient structure that is free from radiative and ohmic losses.Furthermore,the ultra thin thickness and the compactnessofthestructurearedemonstratedaskey components in realizing integrable and CMOS compatible photonic sensors.en_US
dc.identifier.urihttp://ir.mksu.ac.ke/handle/123456780/4363
dc.language.isoen_USen_US
dc.publisherNanoscale Research Lettersen_US
dc.subjectMetasurfacesen_US
dc.subjectPolarization converteren_US
dc.subjectAll-dielectric/grapheneen_US
dc.subjectBirefringenceen_US
dc.titlePolarization Converter with Controllable Birefringence Based on Hybrid All-Dielectric-Graphene Metasurfaceen_US
dc.typeArticleen_US

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