Development of Large-Area Switchable Plasma Device for X-Band Applications

This paper demonstrates a large-area, lightweight, conformal plasma device that interacts with propagating X-band microwave energy. The active elements are rugged plasma-shells - hollow ceramic shells encapsulating a controlled-pressure gas that can be ionized to controlled plasma parameters. Plasma...

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Veröffentlicht in:IEEE transactions on plasma science 2013-04, Vol.41 (4), p.948-954
Hauptverfasser: Cross, L. W., Almalkawi, M. J., Devabhaktuni, V. K.
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper demonstrates a large-area, lightweight, conformal plasma device that interacts with propagating X-band microwave energy. The active elements are rugged plasma-shells - hollow ceramic shells encapsulating a controlled-pressure gas that can be ionized to controlled plasma parameters. Plasma-shells are electrically excited by frequency selective surfaces that are transparent to the frequency band of interest. The result is equivalent to large-area free-space plasma confined in a discrete plasma slab. A novel structure is designed with the aid of full-wave simulation and fabricated as a 76.2-mm square array, and transmission performance is tested across different drive voltages and angles of incidence. Switchable attenuation of 7 dB is measured across the passband when driven with 1400 V pp at 1 MHz. Plasma parameters are estimated from theory and full-wave simulation, with electron density estimated to be 3.6×10 12 cm -3 . The proposed structure has potential for use on mobile platforms.
ISSN:0093-3813
1939-9375
DOI:10.1109/TPS.2013.2251369