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Impact of volume and surface processes on the pre-ionization of dielectric barrier discharges: advanced diagnostics and fluid modeling

机译:体积和表面过程对介质屏障排放预电离的影响:先进的诊断和流体建模

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摘要

The phenomenology and breakdown mechanism of dielectric barrier discharges are strongly determined by volume and surface memory effects. In particular, the pre-ionization provided by residual species in the volume or surface charges on the dielectrics influences the breakdown behavior of filamentary and diffuse discharges. This was investigated by advanced diagnostics such as streak camera imaging, laser photodetachment of negative ions and laser photodesorption of electrons from dielectric surfaces in correlation with 1D fluid modeling. The streak camera images show that an increasing number of residual charges in the volume changes the microdischarge breakdown in air-like gas mixtures from a cathode directed streamer to a simultaneous propagation of cathode- and anode-directed streamers. In contrast, seed electrons are important for the pre-ionization if the density of residual charges in the volume is low. One source of seed electrons are negative ions, whose density exceeds the electron density during the pre phase of diffuse helium oxygen barrier discharges as indicated by the laser photodetachment experiments. Electrons desorbed from the cathodic dielectric have an even larger influence. They induce a transition from the glow-like to the Townsend-like discharge mode in nominally pure helium. Apart from analyzing the importance of the pre-ionization for the breakdown mechanism, the opportunities for manipulating the lateral structure and discharge modes are discussed. For this purpose, the intensity and diameter of a diffuse discharge in helium are controlled by an illuminated semiconducting barrier.
机译:介电阻挡放电的现象学和击穿机构由体积和表面存储器效果强烈地确定。特别地,在电介质上的体积或表面电荷中由残留物种提供的预电离影响丝状和漫射放电的击穿行为。这是通过先进的诊断研究,例如连杆摄像机成像,激光光散,负离子的激光光电二极管和来自介电表面的激光光电,与1D流体建模相关。条纹摄像机图像表明,体积中的越来越多的剩余电荷在来自阴极指向的飘的飘的飘洒的阴极和阳极定向的飘闻器的同时传播中改变了空气状气体混合物中的微放电击穿。相反,如果体积中的残余电荷的密度低,则种子电子对于预电离是重要的。一种种子电子来源是负离子,其密度在漫反射氦屏障排出期间的密度超过电子密度,如激光光电偶像实验所示。从阴极电介质解吸的电子具有更大的影响。它们在名义上纯氦中从发光般的放电模式诱导从发光的转换。除了分析击穿机构的预电离的重要性之外,还讨论了操纵横向结构和放电模式的机会。为此目的,通过照明的半导体屏障控制氦气中漫射放电的强度和直径。

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