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Transformation Electromagnetics Devices Based on Printed-Circuit Tensor Impedance Surfaces

Classical Physics 2018-06-13 v1

Abstract

A method for designing transformation electromagnetics devices using tensor impedance surfaces (TISs) is presented. The method is first applied to idealized tensor impedance boundary conditions (TIBCs), and later to printed-circuit tensor impedance surfaces (PCTISs). A PCTIS is a practical realization of a TIBC. It consists of a tensor impedance sheet, which models a subwavelength patterned metallic cladding, over a grounded dielectric substrate. The method outlined in this paper allows anisotropic TIBCs and PCTISs to be designed that support tangential wave vector distributions and power flow directions specified by a coordinate transformation. As an example, beamshifting devices are designed, using TIBCs and PCTISs, that allow a surface wave to be shifted laterally. The designs are verified with a commercial full-wave electromagnetic solver. This work opens new opportunities for the design and implementation of anisotropic and inhomogeneous printed-circuit or graphene based surfaces that can guide or radiate electromagnetic fields.

Cite

@article{arxiv.1307.3596,
  title  = {Transformation Electromagnetics Devices Based on Printed-Circuit Tensor Impedance Surfaces},
  author = {Amit M. Patel and Anthony Grbic},
  journal= {arXiv preprint arXiv:1307.3596},
  year   = {2018}
}
R2 v1 2026-06-22T00:50:48.814Z