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Enhancing imaging systems using transformation optics
Author(s) -
David R. Smith,
Yaroslav Urzhumov,
Nathan Kundtz,
Nathan Landy
Publication year - 2010
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.18.021238
Subject(s) - optics , transformation optics , gradient index optics , coordinate system , lens (geology) , refractive index , conformal map , physics , isotropy , wavefront , transformation (genetics) , computer science , metamaterial , mathematics , mathematical analysis , biochemistry , chemistry , artificial intelligence , gene
We apply the transformation optical technique to modify or improve conventional refractive and gradient index optical imaging devices. In particular, when it is known that a detector will terminate the paths of rays over some surface, more freedom is available in the transformation approach, since the wave behavior over a large portion of the domain becomes unimportant. For the analyzed configurations, quasi-conformal and conformal coordinate transformations can be used, leading to simplified constitutive parameter distributions that, in some cases, can be realized with isotropic index; index-only media can be low-loss and have broad bandwidth. We apply a coordinate transformation to flatten a Maxwell fish-eye lens, forming a near-perfect relay lens; and also flatten the focal surface associated with a conventional refractive lens, such that the system exhibits an ultra-wide field-of-view with reduced aberration.

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