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Scattering diagnostics of low-temperature plasmas (Rayleigh scattering, Thomson scattering, CARS)

机译:低温等离子体的散射诊断(瑞利散射,汤姆森散射,CARS)

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摘要

Diagnostics of low-temperature plasmas suitable for plasma processing applications using light scattering techniques is a research field of growing importance. The three scattering diagnostic techniques discussed in this paper may be applied to a variety of industrially used thermal and nonthermal plasma processing techniques. These methods are nonintrusive with high temporal and spatial resolution and could help to analyse the absolute composition of a plasma, where as many species as possible in different excitation and ionization states should be included. They furthermore deliver information about the energy of particles under investigation, their temperature, density and fluxes. The scattering theory in random media is summarized very briefly and this approach is applied to Rayleigh and Thomson scattering. The difference between incoherent and coherent scattering is figured out. A short overview over the process of coherent anti-Stokes Raman scattering (CARS) and an introduction into experimental techniques is given, which are required to detect Rayleigh, Thomson and CARS signals from a plasma. Finally, applications of these three diagnostic techniques to miscellaneous plasma experiments are shown. [References: 30]
机译:使用光散射技术诊断适用于等离子体处理应用的低温等离子体是一个日益重要的研究领域。本文讨论的三种散射诊断技术可以应用于多种工业使用的热等离子体和非热等离子体处理技术。这些方法是非侵入性的,具有较高的时间和空间分辨率,可以帮助分析等离子体的绝对组成,应包括尽可能多的处于不同激发和电离状态的物种。他们还提供有关所研究粒子的能量,其温度,密度和通量的信息。简要概述了随机介质中的散射理论,并将该方法应用于瑞利和汤姆森散射。找出了非相干和相干散射之间的差异。简要概述了相干抗斯托克斯拉曼散射(CARS)的过程,并介绍了实验技术,这些技术是检测等离子体中的瑞利,汤姆森和CARS信号所必需的。最后,显示了这三种诊断技术在其他血浆实验中的应用。 [参考:30]

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