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Excitation of vacuum ultraviolet spectra of krypton in a cooled gas discharge

机译:冷却气体放电中氪气真空紫外光谱的激发

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Results are presented on the experimental study of VUV spectra of krypton excited by a dc discharge in a capillary tube with the wall cooled to the temperature of liquid nitrogen. We studied the 120-200 nm spectral region corresponding to the transitions between the dimer lowest excited states and the weakly bound ground state, 1$-u$/, 0$-u$/$+$PLU$/ $YLD 0$- g$/$+$PLU$/. Electron impact, transferring dimers from the ground state into the excited state, is shown to be an efficient excitation mechanism in the 50-650 Torr and the 10-50 mA pressure and current ranges. The spectra obtained and the calculations made corroborate the high rate of this process.
机译:结果提出了通过在毛细管中的DC放电激发的氪气相激发的Vuv光谱的实验研究,其中壁冷却到液氮温度。我们研究了120-200nm光谱区域对应于二聚体最低兴奋状态和弱写地面状态的转换,1 $ -u $ /,0 $ -u $ / $ + $ plu $ / $ yld 0 $ - g $ / $ + $ plu $ /。电子撞击,将二聚体从地态转移到激发状态下,显示为50-650托的有效激励机制,10-50 mA压力和电流范围。获得的光谱和计算使得对该过程的高速率进行了证实。

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