DocumentCode :
1431798
Title :
Novel Right-Handed Metamaterial Based on the Concept of “Autonomous Control System of Living Cells” and Its Absorber Applications
Author :
Kotsuka, Youji ; Murano, Kimitoshi ; Amano, Mitsuhiro ; Sugiyama, Shinichiro
Author_Institution :
Tokai Univ., Hiratsuka, Japan
Volume :
52
Issue :
3
fYear :
2010
Firstpage :
556
Lastpage :
565
Abstract :
A novel right-handed metamaterial similar to an “autonomous control system of a living cell” and capable of responding to electromagnetic waves is proposed with its fundamental configurations. Using microwave absorbers as an example, the possibility of equivalently controlling their material constants are investigated both theoretically and empirically. These absorbers are composed of unit cells based on the concept of an autonomous controllable metamaterial (ACMM). The theoretical approaches used to obtain ACMM-based absorber design data are revealed. In order to improve the absorber matching characteristics, the principle of obtaining the broadband matching characteristics with an absorption band of 1.3 GHz at 4.25 GHz is clarified. In addition, the methods for improving the matching degradation of the oblique incidence of a TM wave are investigated. For the TM wave oblique incidence, a new ACMM-based absorber configuration comprising unit cells with inductive fins is proposed. At an incident angle of 45°, a matching characteristic of -30 dB is achieved in the case of the TM wave. These ACMMs are controlled by using only two bias feeder wirings for PIN diodes.
Keywords :
electromagnetic wave absorption; metamaterials; ACMM-based absorber design data; PIN diodes; TM wave oblique incidence; absorber matching characteristics; autonomous controllable metamaterial; bandwidth 1.3 GHz; broadband matching characteristics; electromagnetic waves; frequency 2.4 GHz; living cell autonomous control system; microwave absorbers; right-handed metamaterial; two bias feeder wirings; unit cells; Absorption; Active circuits; Control systems; Degradation; Electromagnetic scattering; Ferrites; Materials science and technology; Metamaterials; Wavelength measurement; Wiring; Absorber; active circuits; matching; metamaterial;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2010.2042171
Filename :
5424077
Link To Document :
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