Journal
IEEE TRANSACTIONS ON PLASMA SCIENCE
Volume 39, Issue 11, Pages 2306-2307Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TPS.2011.2158448
Keywords
Dielectric barrier discharge; low-temperature plasma; plasma bullets; plasma jet
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The ignition and propagation of an atmospheric-pressure plasma jet is examined using fast imaging techniques. The plasma jet consists of a single electrode, fabricated using a transparent and conductive polymer film, wrapped around a quartz dielectric tube; this allows the entire ignition and propagation process to be observed without the usual obstruction of a nontransparent electrode. It is shown that the discharge is always triggered at the electrode edges and that the plasma propagation mechanism differs significantly depending on the polarity of the applied voltage.
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