DocumentCode :
3605503
Title :
Design of Antireflection Grading Using Magneto-Dielectric Materials
Author :
Good, Brandon L. ; Simmons, Shaun P. ; Mirotznik, Mark S.
Author_Institution :
Carderock Div., Naval Surface Warfare Center, Bethesda, MD, USA
Volume :
63
Issue :
11
fYear :
2015
Firstpage :
4811
Lastpage :
4817
Abstract :
A number of practical application areas would benefit from the development of thin wideband antireflective (AR) surfaces. Here, we incorporate magnetic materials into AR gradings using two approaches. 1) We use the analytic approach demonstrated in a recent paper that details an optimal wideband AR design using a continuous one-dimensional (1-D) grading of dispersive dielectrics [1]. We extend the dispersive nonmagnetic equations in [1] to design perfect AR magneto-dielectric gradings. 2) We derive a spatial-coordinate transformation (SCT) approach that transforms the nonmagnetics solution to achieve a perfect AR magneto-dielectric grading. We find, in general, that the SCT method enables more realizable and flexible solutions. We detail a practical approach for realizing the magneto-dielectric gradings using subwavelength texturing (i.e., motheye method). Several numerical examples demonstrate the utility of this approach in realizing very thin, yet broadband, and AR designs.
Keywords :
antireflection coatings; dielectric materials; magnetic materials; permittivity; AR magnetodielectric grading; SCT approach; antireflection grading; dispersive dielectric; dispersive nonmagnetic equation; magnetodielectric material; spatial-coordinate transformation approach; subwavelength texturing; Broadband antennas; Broadband communication; Dispersion; Optical surface waves; Permeability; Permittivity; Surface impedance; Anti-reflection; Antireflection; Transformational Electromagnetics; transformational electromagnetics;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2015.2477091
Filename :
7244238
Link To Document :
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