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Perfect Conversion of a TM Surface Wave Into a TM Leaky Wave by an Isotropic Periodic Metasurface Printed on a Grounded Dielectric Slab

Svetlana N. Tcvetkova, Enrica Martini, Sergei A. Tretyakov, Stefano Maci

2020IEEE Transactions on Antennas and Propagation17 citationsDOIOpen Access PDF

Abstract

This article presents an exact solution for a perfect conversion of a TM-polarized surface wave (SW) into a TM-polarized leaky wave (LW) using a reciprocal and lossless penetrable metasurface (MTS) characterized by a scalar sheet impedance, located on a grounded slab. On contrary to the known realizations of LW antennas, the optimal surface reactance modulation which is found here ensures the absence of evanescent higher-order modes of the field Floquet-wave expansion near the radiating surface. Thus, all the energy carried by the SW is used for launching the single inhomogeneous plane wave into space without accumulation of reactive energy in the higher-order modes. It is shown that the resulting penetrable MTS exhibits variation from an inductive to a capacitive reactance passing through a resonance. The present formulation complements a previous article of the authors, in which a perfect conversion from TM-polarized SW to TE-polarized LW was found for impenetrable boundary conditions. Here, the solution takes into account the grounded slab dispersion, and it is convenient for practical implementation.

Topics & Concepts

ReactancePhysicsPlane waveDielectricSurface waveEvanescent waveOpticsIsotropyElectromagnetic radiationScalar fieldCapacitive sensingPoynting vectorBoundary (topology)Boundary value problemReflection coefficientReflection (computer programming)RectennaElectromagnetic fieldSlabReciprocalPlane (geometry)Basis (linear algebra)Electrical impedanceReciprocity (cultural anthropology)Mathematical analysisScalar (mathematics)Mathieu functionSurface (topology)Near and far fieldLossless compressionField (mathematics)Wave impedanceWave propagationEnergy (signal processing)Finite thicknessDevelopment (topology)GeometryClassical mechanicsSpace (punctuation)Dispersion relationMetamaterials and Metasurfaces ApplicationsAdvanced Antenna and Metasurface TechnologiesPlasmonic and Surface Plasmon Research
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