DocumentCode :
3600762
Title :
Functional-Graded Index Metasurfaces for Infrared Radiation and Guiding
Author :
Farmahini-Farahani, Mohsen ; Mosallaei, Hossein
Author_Institution :
Dept. of Electr. & Comput. Eng., Northeastern Univ., Boston, MA, USA
Volume :
14
Issue :
1
fYear :
2015
Firstpage :
75
Lastpage :
81
Abstract :
We present the fundamental principle of plasmonic-graded-index materials for radiating and guiding at infrared range. The method to derive effective refractive index is presented and effective refractive index engineering is comprehensively investigated by obtaining complex dispersion diagrams. As an illustrative example for radiating structure, a graded index metasurface is designed for collimating the power emanating from an aperture to a steered narrow beam. The center frequency of operation is 57.5 THz. The half power beam widths of the beam radiated from a 15λ × 15λ metasurface to θ = 30° direction are 6° and 16° in elevation and azimuth planes, respectively. Radiation efficiency is calculated to be 86%. To demonstrate the guiding application, a flat step index waveguide is designed. The surface wave guiding is characterized by obtaining complex dispersion diagram and mode profiles. The applications of such waveguides in feeding antennas and routing surface waves are demonstrated with some unique designs.
Keywords :
gradient index optics; metamaterial antennas; optical design techniques; optical dispersion; optical metamaterials; optical waveguide theory; plasmonics; refractive index; waveguide antennas; antenna feeding; azimuth planes; dispersion diagrams; effective refractive index engineering; elevation planes; flat step index waveguide; frequency 57.5 THz; functional-graded index metasurfaces; half power beam widths; infrared guiding; infrared radiation; mode profiles; plasmonic-graded-index materials; radiating structure; radiation efficiency; steered narrow beam; surface wave guiding; Dispersion; Indexes; Optical surface waves; Optical waveguides; Plasmons; Refractive index; Surface waves; Graded index; Plasmonics; graded index; hologram; metasurface; plasmonics;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2014.2365554
Filename :
6942249
Link To Document :
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