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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >THE ROLE OF NEUTRAL METASTABLE N-2(A) MOLECULES IN THE BREAKDOWN PROBABILITY AND GLOW DISCHARGE IN NITROGEN
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THE ROLE OF NEUTRAL METASTABLE N-2(A) MOLECULES IN THE BREAKDOWN PROBABILITY AND GLOW DISCHARGE IN NITROGEN

机译:中性亚稳态N-2(A)分子在氮的分解概率和辉光释放中的作用

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摘要

This is the summary of results of four experiments carried out in order to establish the initiators of electric breakdown in gases after long afterglow periods (tau = 20 s), particularly the role of molecules in the N-2(A(3) Sigma(u)(+)) state in nitrogen. By illuminating nitrogen-filled measuring diodes by nitrogen-filled discharge lamps it was uniquely established that (i) a prolongation of the breakdown time delay, (ii) an increase in the breakdown voltage, (iii) a decrease in the stationary glow current and (iv) a shortening of the discharge quenching time occur due to optogalvanic de-population of the mentioned metastable state. Thus molecules and/or atoms in metastable states do considerably influence the breakdown probability as much as they contribute to the maintainance of glow-discharge currents. [References: 7]
机译:这是为确定长余辉时间(tau = 20 s)之后气体中电击穿的引发剂而进行的四个实验的结果的摘要,特别是分子在N-2(A(3)Sigma( u)(+))状态在氮气中。通过用充氮的放电灯照亮充氮的测量二极管,可以独特地确定:(i)击穿时间延迟的延长,(ii)击穿电压的增加,(iii)静态辉光电流的减小,以及(iv)由于所述亚稳态的光电人口减少,导致放电猝灭时间的缩短。因此,处于亚稳态的分子和/或原子确实会极大地影响击穿概率,因为它们有助于维持辉光放电电流。 [参考:7]

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