Analytical study of spherical cloak/anti-cloak interactions
arXiv:1009.4348
Abstract
The intriguing concept of "anti-cloaking" has been recently introduced within the framework of transformation optics (TO), first as a "countermeasure" to invisibility-cloaking (i.e., to restore the scattering response of a cloaked target), and more recently in connection with "sensor invisibility" (i.e., to strongly reduce the scattering response while maintaining the field-sensing capabilities). In this paper, we extend our previous studies, which were limited to a two-dimensional cylindrical scenario, to the three-dimensional spherical case. More specifically, via a generalized (coordinate-mapped) Mie-series approach, we derive a general analytical full-wave solution pertaining to plane-wave-excited configurations featuring a spherical object surrounded by a TO-based invisibility cloak coupled via a vacuum layer to an anti-cloak, and explore the various interactions of interest. With a number of selected examples, we illustrate the cloaking and field-restoring capabilities of various configurations, highlighting similarities and differences with respect to the cylindrical case, with special emphasis on sensor-cloaking scenarios and ideas for approximate implementations that require the use of double-positive media only.
25 pages, 10 figures (minor revisions)
References in corpus (7)
- Achieving transparency with plasmonic coatings
- Confirmation of Cylindrical Perfect Invisibility Cloak Using Fourier-Bessel Analysis
- A metamaterial frequency-selective super-absorber that has absorbing cross section significantly bigger than the geometric cross section
- Design and analytically full-wave validation of the invisibility cloaks, concentrators, and field rotators created with a general class of transformations
- Extraordinary surface voltage effect in the invisibility cloak with an active device inside
- Experimental verification of broadband cloaking using a volumetric cloak composed of periodically stacked cylindrical transmission-line networks
- Cylindrical Cloak with Axial Permittivity/Permeability Spatially Invariant