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Planar Helium Plasma Jet: Plasma 'Bullets' Formation, 2D 'Bullets' Concept and Imaging

机译:平面氦等离子射流:血浆“子弹”形成,2D“子弹”概念和成像

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摘要

Applications of dielectric barrier discharge (DBD)-based atmospheric pressure plasma jets are often limited by the relatively small area of treatment due to their one-dimensional (ID) configuration. This letter describes the first results demonstrating generation of two-dimensional (2D) plasma "bullets" and 2D plasma jets that permit rapid treatment of large targets. Imaging of pulsed DBD in helium (He) and ionization wave propagation along the dielectric surface shows that DBD evolution starts with formation of transient anode glow; only then does the development of cathode-directed streamers continue. The anode glow can propagate as an ionization wave along the dielectric surface outside of the discharge gap. We show that plasma "bullet" propagation is not limited to ID geometry (i.e.. tubes) and that it can be organized in a planar plasma jet form or other 2D (or even 3D) shapes.
机译:基于介电阻挡放电(DBD)的大气压等离子体喷射的应用通常由它们的一维(ID)构型的相对较小的处理区域限制。 这封信描述了展示了允许快速治疗大目标的二维(2D)等离子体“子弹”和2D等离子体喷射的第一件结果。 氦(HE)中脉冲DBD的成像和沿电介质表面的电离波传播表明,DBD演进从形成瞬态阳极光泽开始; 只有那么行动的阴极针对飘带的发展继续。 阳极光发射可以沿着放电间隙外部的介电表面传播为电离波。 我们表明等离子体“子弹”传播不限于ID几何形状(即管),并且它可以以平面等离子体喷射形式或其他2D(或甚至3D)形状组织。

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