Title :
Analysis of a Plane Wave-Excited Subwavelength Circular Aperture in a Planar Conducting Screen Illuminating a Multilayer Uniaxial Sample
Author :
Michalski, Krzysztof A. ; Mosig, Juan R.
Author_Institution :
Dept. of Electr. & Comput. Eng., Texas A&M Univ., College Station, TX, USA
Abstract :
A spectral domain analysis is presented of a plane wave-excited subwavelength circular aperture in a planar perfectly conducting screen in close proximity to a multilayer stack, which may comprise uniaxially anisotropic slices. The formulation employs the Bethe-Bouwkamp aperture model for the general case of oblique incidence, and it combines the Hankel transform method with a transmission line network analogue of the medium, which facilitates the inclusion of any number of material layers. The electromagnetic fields are expressed in terms of one-dimensional (1-D) Hankel transform integrals, which are efficiently evaluated by a numerical quadrature along a suitably selected path, with convergence acceleration by extrapolation. Sample numerical results are presented to demonstrate the validity of the method and its utility in the modeling of multilayer near-field lenses and aperture-type probes of near-field optical microscopy.
Keywords :
Hankel transforms; electromagnetic fields; light transmission; optical microscopy; spectral analysis; Bethe-Bouwkamp aperture model; Hankel transform method; aperture-type probes; electromagnetic fields; extrapolation; light transmission properties; multilayer near-field lenses; multilayer stack; multilayer uniaxial sample; near-field optical microscopy; numerical quadrature; one-dimensional Hankel transform integrals; planar conducting screen; plane wave-excited subwavelength circular aperture; spectral domain analysis; transmission line network; uniaxially anisotropic slices; Apertures; Magnetic anisotropy; Power transmission lines; Slabs; Spectral analysis; Transforms; Vectors; Bethe-Bouwkamp model; Bethe???Bouwkamp (BB) model; Hankel transform; Sommerfeld integral; Subwavelength aperture; subwavelength aperture; uniaxial medium;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2015.2404573