DocumentCode
1396260
Title
Electromagnetic Design With Transformation Optics
Author
Kundtz, Nathan B. ; Smith, R. ; Pendry, John B.
Author_Institution
Center for Metamaterials & Integrated Plasmonics, Duke Univ., Durham, NC, USA
Volume
99
Issue
10
fYear
2011
Firstpage
1622
Lastpage
1633
Abstract
Transformation optics is an emerging technique for the design of advanced electromagnetic media. Transformation optical devices exploit the form invariance of Maxwell´s equations, allowing geometry to play the dominant role in the design process rather than traditional wave or ray optics. The use of coordinate transformations vastly eases the burden of design for a large class of devices, though at the expense of increasing the complexity of the underlying materials used. Although the required constitutive parameters of a transformation optical structure can be challenging-inherently anisotropic and spatially varying, with both magnetic and electric response-nevertheless the parameter requirements can often be met or approximated through the use of artificially structured metamaterials. Here, we review the basic concepts associated with transformation optics and provide several examples to illustrate its application.
Keywords
Maxwell equations; metamaterials; optical design techniques; optical elements; Maxwell equations; coordinate transformations; electric response; electromagnetic design; magnetic response; structured metamaterials; transformation optical devices; transformation optical structure; transformation optics; Electromagnetic scattering; Gradient methods; Magnetic materials; Maxwell equations; Metamaterials; Optical distortion; Electromagnetic scattering; gradient index; metamaterials; transformation optics;
fLanguage
English
Journal_Title
Proceedings of the IEEE
Publisher
ieee
ISSN
0018-9219
Type
jour
DOI
10.1109/JPROC.2010.2089664
Filename
5659462
Link To Document