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DC normal glow discharges in atmospheric pressure atomic and molecular gases

机译:大气中原子和分子气体中的直流正常辉光放电

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DC glow discharges were experimentally investigated in atmospheric pressure helium, argon, hydrogen, nitrogen and air. The discharges were characterized by visualization of the discharges and voltage and current measurements for current of up to several milliamperes. Significant differences are seen in the gas temperature; however all the discharges appear to operate as temperature and pressure scaled versions of low pressure discharges. In the normal glow discharges, features such as negative glow, Faraday dark space and positive column regions are clearly observable. In hydrogen and to a lesser degree in helium and argon standing striations of the positive column were visible in the normal glow regime. Normal glow characteristics such as normal current density at the cathode and constant electric field in the positive column are observed although there are some unexplained effects. The emission spectra for each of the discharges were studied. Also the rotational and vibrational temperature of the discharges were measured by adding trace amounts of N-2 to the discharge gas and comparing modeled optical emission spectra of the N-2 2nd positive system with spectroscopic measurements from the discharge. The gas temperatures for a 3.5 mA normal glow discharge were around 420 K, 680 K, 750 K, 890 K and 1320 K in helium, argon, hydrogen, nitrogen and air, respectively. Measured vibrational and excitation temperatures indicate non-thermal discharge operation. Mixtures of gases achieved intermediate temperatures.
机译:在大气压氦,氩,氢,氮和空气中对直流辉光放电进行了实验研究。放电的特征是可视化的放电以及电压和电流测量值(最大电流为几毫安)。气体温度存在明显差异;但是,所有的排放物似乎都是作为低压排放物的温度和压力比例版本运行的。在正常的辉光放电中,可以明显观察到诸如负辉光,法拉第暗空间和正列区域之类的特征。在氢气中,氦气和氩气中较小的程度,在正常辉光状态下可以看到正极柱的条纹。观察到正常的辉光特性,例如阴极的正常电流密度和正极的恒定电场,尽管有一些无法解释的影响。研究了每种放电的发射光谱。还通过以下方式测量放电的旋转和振动温度:将微量的N-2添加到放电气体中,并将​​N-2第二正系统的建模光发射光谱与来自放电的光谱测量结果进行比较。 3.5 mA正常辉光放电的气体温度在氦气,氩气,氢气,氮气和空气中分别约为420 K,680 K,750 K,890 K和1320K。测得的振动和激发温度指示非热放电运行。气体混合物达到中间温度。

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