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Influence of pressure and discharge voltage on spectral intensities in a pulsed nitrogen discharge supersonic free-jet

机译:压力和放电电压对脉冲氮气放电超音速自由射流中光谱强度的影响

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The effects of the pressure and discharge voltage on the spectral intensities of the second positive and first negative systems were studied in a pulsed nitrogen discharge supersonic free-jet. The results show that a stabilized discharge condition was reached when the vacuum chamber pressure increased to 100 Pa. Both N_2(C~3Π_u) and N_2~+(B~2Σ_u~+) states were highly populated at a pressure of 100 Pa to 130 Pa. The active state N _2(C~3Π_u)could be selectively populated at a low pressure of 10 Pa and a discharge voltage of 4500 V. Different populating mechanisms under the experimental conditions for N_2(C ~3Π_u) and N_2~+(B ~2Σ_u~+) states were proposed to account for the experimental results.
机译:在脉冲氮气放电超音速自由射流中研究了压力和放电电压对第二正负系统的光谱强度的影响。结果表明,当真空室压力升至100 Pa时,达到了稳定的放电条件。在100 Pa至130的压力下,N_2(C〜3Π_u)和N_2〜+(B〜2Σ_u〜+)态均处于高填充状态。可以在10 Pa的低压和4500 V的放电电压下选择性地填充活跃状态N _2(C〜3Π_u)。在实验条件下,N_2(C〜3Π_u)和N_2〜+(提出了B〜2Σ_u〜+)状态来说明实验结果。

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