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Journal ArticleDOI

Cloaking Devices, Electromagnetic Wormholes, and Transformation Optics

Allan Greenleaf, +3 more
- 01 Feb 2009 - 
- Vol. 51, Iss: 1, pp 3-33
TLDR
Recent theoretical and experimental progress on making objects invisible to detection by electromagnetic waves is described and ideas for devices that would once have seemed fanciful may now be at least approximately implemented physically using a new class of artificially structured materials called metamaterials.
Abstract
We describe recent theoretical and experimental progress on making objects invisible to detection by electromagnetic waves. Ideas for devices that would once have seemed fanciful may now be at least approximately implemented physically using a new class of artificially structured materials called metamaterials. Maxwell's equations have transformation laws that allow for the design of electromagnetic material parameters that steer light around a hidden region, returning it to its original path on the far side. Not only would observers be unaware of the contents of the hidden region, they would not even be aware that something was being hidden. An object contained in the hidden region, which would have no shadow, is said to be cloaked. Proposals for, and even experimental implementations of, such cloaking devices have received the most attention, but other designs having striking effects on wave propagation are possible. All of these designs are initially based on the transformation laws of the equations that govern wave propagation but, due to the singular parameters that give rise to the desired effects, care needs to be taken in formulating and analyzing physically meaningful solutions. We recount the recent history of the subject and discuss some of the mathematical and physical issues involved.

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Citations
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Electrical impedance tomography and Calderón's problem

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Regularized d-bar method for the inverse conductivity problem

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Cloaking via change of variables for the Helmholtz equation

TL;DR: In this paper, the authors examined a natural regularization, obtained by blowing up a ball of radius ρ rather than a point, and including a well-chosen lossy layer at the inner edge of the cloak.
Journal ArticleDOI

Spectral Theory of a Neumann–Poincaré-Type Operator and Analysis of Cloaking Due to Anomalous Localized Resonance

TL;DR: In this paper, a necessary and sufficient condition on the fixed source term for electromagnetic power dissipation to blow up as the loss parameter of the plasmonic material goes to zero is given.
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Journal ArticleDOI

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TL;DR: In this article, the authors give related constructions of invisible tunnels, which allow electromagnetic waves to pass between possibly distant points, but with only the ends of the tunnels visible to electromagnetic imaging.
Journal ArticleDOI

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Proceedings Article

Impedance matched hyperlens

TL;DR: An imaging system capable of magnification, subwavelength-resolution and impedance matching, which minimizes reflection losses is developed, which is based on available materials and existing fabrication technologies.
Journal ArticleDOI

Generalized soft-and-hard surface

TL;DR: Lindell et al. as discussed by the authors generalized the SHS boundary by defining it in terms of two complex vectors tangential to the surface, and they showed that there exist two eigenpolarizations, TE and TM with respect to the two vectors for plane waves of any angle of incidence.
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