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Measuring parameters of pulse volume discharges in atmospheric-pressure air by the emission-spectroscopy and laser-interferometry methods

机译:发射光谱法和激光干涉法测量大气压空气中脉冲体积放电的参数

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摘要

An experimental bench for generating pulse discharges in an atmospheric-pressure air medium is described. The results of measuring the gas-kinetic temperatures and the electron density using spectral methods and a multiple-beam Fabry-Perot interferometer, respectively, are presented. Depending on the geometry of the electrode system, a voltage pulse was 30-60 kV at a pulse FWHM duration of 50-200 ns. The measurement results revealed significant differences between the vibrational (2500-6000 K) and rotational (300-700 K) temperatures of the medium in a discharge, which are typical of nonequilibrium low-temperature plasma. It was shown that if the volume form of discharge is retained, the maximum electron density is (1.5 +/- 0.2) x 10(13) cm(-3), which is comparable to the critical electron density for this type of discharge. The time of plasma existence is about 500 ns and corresponds to the time of existence of an electric field in the discharge region.
机译:描述了一种在大气压空气介质中产生脉冲放电的实验台。给出了分别使用光谱法和多束法布里-珀罗干涉仪测量气体动力学温度和电子密度的结果。根据电极系统的几何形状,在50-200 ns的FWHM脉冲持续时间内,电压脉冲为30-60 kV。测量结果表明,放电中介质的振动温度(2500-6000 K)和旋转温度(300-700 K)之间存在显着差异,这是非平衡低温等离子体的典型特征。结果表明,如果保留放电的体积形式,则最大电子密度为(1.5 +/- 0.2)x 10(13)cm(-3),与这种放电的临界电子密度相当。等离子体存在的时间约为500 ns,它对应于放电区域中电场的存在时间。

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