Related Experiment Video
Updated: May 12, 2026

Lens-free Video Microscopy for the Dynamic and Quantitative Analysis of Adherent Cell Culture
Published on: February 23, 2018
Far-field analysis of axially symmetric three-dimensional directional cloaks
Cristian Ciracì1, Yaroslav Urzhumov, David R Smith
1Center for Metamaterials and Integrated Plasmonics, and Department of Electrical and Computer Engineering, Duke University, Durham NC 27708, USA. cristian.ciraci@duke.edu
Abstract:
Axisymmetric radiating and scattering structures whose rotational invariance is broken by non-axisymmetric excitations present an important class of problems in electromagnetics. For such problems, a cylindrical wave decomposition formalism can be used to efficiently obtain numerical solutions to the full-wave frequency-domain problem. Often, the far-field, or Fraunhofer region is of particular interest in scattering cross-section and radiation pattern calculations; yet, it is usually impractical to compute full-wave solutions for this region. Here, we propose a generalization of the Stratton-Chu far-field integral adapted for 2.5D formalism. The integration over a closed, axially symmetric surface is analytically reduced to a line integral on a meridional plane. We benchmark this computational technique by comparing it with analytical Mie solutions for a plasmonic nanoparticle, and apply it to the design of a three-dimensional polarization-insensitive cloak.
Related Concept Videos
Gauss's Law: Cylindrical Symmetry
Divergence and Curl of Magnetic Field
Plane Electromagnetic Waves I
The EM field is assumed to be a...
Gauss's Law: Spherical Symmetry
Divergence and Curl of Electric Field
Gauss's Law: Planar Symmetry
