Derivation of higher-order impedance boundary conditions for stratified coatings composed of inhomogeneous-dielectric and homogeneous-bianisotropic layers
V. Galdi et Im. Pinto, Derivation of higher-order impedance boundary conditions for stratified coatings composed of inhomogeneous-dielectric and homogeneous-bianisotropic layers, RADIO SCI, 35(2), 2000, pp. 287-303
A spectral domain framework is presented for deriving exact electromagnetic
impedance boundary conditions for isotropic, longitudinally inhomogeneous,
dielectric coatings on a general (polarization-rotating) impedance plane.
The derived expressions are shown to be well approximated over a reasonably
wide range of parameters by means of rational functions of the spectral va
riables, from which higher-order approximate impedance boundary conditions
are readily obtained by simple Fourier transformation. The proposed method
is readily extended to multilayer coatings consisting of any combination of
inhomogeneous dielectric layers and homogeneous, arbitrarily complex (e.g.
, bianisotropic, nonreciprocal) materials. Application to curved boundaries
is also possible. A number of examples are included to validate the propos
ed approach and show its versatility and reliability.