Effect of Resonance Responses of Spatially Separated and Independently Electrically Controlled Metastructures with Varactors on Microwave Interferogram of Meta-Interferometer

Application of spatially separated and independently electrically controlled from different sources resonant metastructures is proposed for control of a multiband interferogram of a meta-interferometer. Independent control of the frequency and width of the stopband in an interval of 3–6 GHz is demon...

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Veröffentlicht in:Journal of communications technology & electronics 2021-12, Vol.66 (12), p.1307-1314
Hauptverfasser: Kraftmakher, G. A., Butylkin, V. S., Kazantsev, Yu. N., Kalenov, D. S., Maltsev, V. P.
Format: Artikel
Sprache:eng
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Zusammenfassung:Application of spatially separated and independently electrically controlled from different sources resonant metastructures is proposed for control of a multiband interferogram of a meta-interferometer. Independent control of the frequency and width of the stopband in an interval of 3–6 GHz is demonstrated for the M 1 metastructure (that serves as a beam splitter) containing a periodic grating of parallel wires with an orthogonally asymmetrically located copper strip with a break loaded with a varactor and the M 2 metastructure (in a shorted h -arm that represents a double-split dipole ring with two varactors. The resonance responses of the metastructures and the dynamics of the interferogram are studied versus the reverse bias voltage across the varactors.
ISSN:1064-2269
1555-6557
DOI:10.1134/S1064226921120147