DocumentCode
1758009
Title
A Triple-Band Ultrathin Metamaterial Absorber With Wide-Angle and Polarization Stability
Author
Huiqing Zhai ; Chuanhan Zhan ; Zhenhua Li ; Changhong Liang
Author_Institution
Nat. Key Lab. of Antennas & Microwave Technol., Xidian Univ., Xi´an, China
Volume
14
fYear
2015
fDate
2015
Firstpage
241
Lastpage
244
Abstract
This letter presents a triple-band compact and efficient ultrathin metamaterial absorber with wide-angle and polarization stability. The compact single unit cell includes a metallic background plane, four groups of dipoles lying around a metallic ring connected by four groups of pins, and only 1-mm low-cost dielectric layer. In addition, the main parameters of the designed absorber are investigated and optimized to show that each of three absorption frequency points can be effectively separately adapted, respectively. The simulation results demonstrate that this absorber has good absorption rates and polarization-insensitive characteristic over wide angles of incident waves for both transverse electric (TE) and transverse magnetic (TM) in three frequency bands. The waveguide measurement method is utilized to test the simulated results of three good absorption peaks.
Keywords
electromagnetic metamaterials; electromagnetic wave absorption; electromagnetic wave polarisation; TE; TM; absorption frequency points; absorption rates; compact single unit cell; incident wave wide angles; low-cost dielectric layer; metallic background plane; metallic ring; polarization stability; polarization-insensitive characteristic; size 1 mm; transverse electric; transverse magnetic; triple-band ultrathin metamaterial absorber; waveguide measurement method; Absorption; Antenna measurements; Current distribution; Electromagnetic waveguides; Magnetic materials; Metamaterials; Resonant frequency; Metamaterial absorber; triple-band; ultrathin; wide-angle and polarization stability;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2014.2361011
Filename
6914596
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