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EUV spectroscopy of plasmas created in the final anode-cathode gap of the Z-Machine high-current pulsed generator (SNL)

机译:在Z机大电流脉冲发生器(SNL)的最终阳极-阴极间隙中产生的等离子体的EUV光谱

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The effect of short-circuit across the final anode-cathode gap of powerful pulsed current generators could hamper efficient power delivery to the Z-pinch plasma. To study this effect, a novel EUV diagnostics of plasmas created in the final section of the transmission line (the anode-cathode gap near the main load) of the Z-Machine high-current generator (Sandia National Laboratories, United States) was developed. The work included developing spectroscopic instruments, theoretical and experimental studies of EUV spectra of iron ions in well-diagnosed laser-produced plasmas, and a comparison of these spectra with those of plasmas created in the final anode-cathode gap of the transmission line. The EUV spectra of highly charged Fe ions in the spectral range lambda similar to 20-800 angstrom were investigated. In experiments performed at Sandia National Laboratories, spectra of FeXIII-FeXVII ions were observed. A comparison of the measured and calculated spectra shows that the electron plasma temperature in the anode-cathode gap is T (e) similar to 200 eV.
机译:强大的脉冲电流发生器的最终阳极-阴极间隙之间的短路效应可能会阻碍向Z型捏合等离子体的有效功率传输。为了研究这种影响,开发了一种新颖的EUV诊断技术,用于诊断Z机高电流发生器(美国Sandia National Laboratories,美国)的传输线最后部分(靠近主负载的阳极-阴极间隙)中产生的等离子体。这项工作包括开发光谱仪器,对经过良好诊断的激光产生的等离子体中铁离子的EUV光谱进行理论和实验研究,并将这些光谱与在传输线最终阳极-阴极间隙中产生的等离子体的光谱进行比较。研究了在类似于20-800埃的光谱范围内的高度带电的Fe离子的EUV光谱。在桑迪亚国家实验室进行的实验中,观察到FeXIII-FeXVII离子的光谱。测量和计算的光谱的比较显示,阳极-阴极间隙中的电子等离子体温度为T(e),类似于200 eV。

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