Strong group-velocity dispersion compensation with phase-engineered sheet metamaterials
Journal article, 2014

Resonant metamaterials usually exhibit substantial dispersion, which is considered a shortcoming for many applications. Here we take advantage of the ability to tailor the dispersive response of a metamaterial, introducing a new method of group-velocity dispersion compensation in telecommunication systems. The method consists of stacking a number of highly dispersive sheet metamaterials and is capable of compensating the dispersion of optical fibers with either negative or positive group-velocity dispersion coefficients. We demonstrate that the phase-engineered metamaterial can provide strong group-velocity dispersion management without being adversely affected by large transmission loss, while at the same time offering high customizability and a small footprint.

Author

B. Dastmalchi

Philippe Tassin

Chalmers, Applied Physics, Condensed Matter Theory

T. Koschny

C. M. Soukoulis

Physical Review B - Condensed Matter and Materials Physics

24699950 (ISSN) 24699969 (eISSN)

Vol. 89 11 Article no. 115123- 115123

Subject Categories

Physical Sciences

DOI

10.1103/PhysRevB.89.115123

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