Effect of Piezoelectric Resonance in a Ferroelectric Plasma Source

M. Kemp, S. Kovaleski
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引用次数: 5

Abstract

Ferroelectric plasma sources have been studied extensively for the past few decades. Potential applications include cathodes for traveling wave tubes or high-energy electron beams, triggers for pulsed power gas switches, and microspacecraft propulsion. In addition to liberation of ions and electrons from the ferroelectric itself, one hypothesized source of particles is from plasma generated on the ferroelectric surface. Factors identified influencing the plasma formation include triple point enhancement due to microgaps and surface charges generated by polarization switching. In this paper, we detail the utilization of piezoelectric resonance to generate plasma with reduced applied voltages. To study this effect, an rf bipolar voltage is applied across the ferroelectric. A non-linear device impedance is observed around the radial resonant frequency of the disk. The plasma breakdown voltage is shown to correlate with the impedance of the device. This effect is similar to what occurs in Rosen-type piezoelectric transformers manufactured with the secondary in a dielectric barrier discharge geometry. In our experiments, the plasma is generated in backgrounds of both vacuum and atmospheric pressure air. In addition, both lead zirconate titanate and lithium niobate ferroelectrics are utilized.
压电共振对铁电等离子体源的影响
铁电等离子体源在过去的几十年里得到了广泛的研究。潜在的应用包括行波管或高能电子束的阴极,脉冲功率气体开关的触发器,以及微型航天器推进。除了离子和电子从铁电体本身解放出来之外,粒子的一个假设来源是在铁电表面产生的等离子体。影响等离子体形成的因素包括微间隙引起的三相点增强和极化开关产生的表面电荷。在本文中,我们详细介绍了利用压电共振在降低施加电压的情况下产生等离子体。为了研究这种效应,在铁电体上施加射频双极电压。在圆盘的径向谐振频率周围观察到非线性器件阻抗。等离子体击穿电压与器件的阻抗相关。这种效应类似于用介电阻挡放电几何形状的二次电极制造的罗森式压电变压器。在我们的实验中,等离子体是在真空和常压空气的背景下产生的。此外,锆钛酸铅和铌酸锂铁电体也被利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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