VUV absorption spectroscopy measurements of the role of fast neutral atoms in a high-power gap breakdown

Filuk, Bailey, Cuneo, Lake, Nash, Noack, Maron
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引用次数: 3

Abstract

The maximum power achieved in a wide variety of high-power devices, including electron and ion diodes, z pinches, and microwave generators, is presently limited by anode-cathode gap breakdown. A frequently discussed hypothesis for this effect is ionization of fast neutral atoms injected throughout the anode-cathode gap during the power pulse. We describe a newly developed diagnostic tool that provides a direct test of this hypothesis. Time-resolved vacuum-ultraviolet absorption spectroscopy is used to directly probe fast neutral atoms with 1-mm spatial resolution in the 10-mm anode-cathode gap of the SABRE 5 MV, 1 TW applied-B ion diode. Absorption spectra collected during Ar RF glow discharges and with CO2 gas fills confirm the reliability of the diagnostic technique. Throughout the 50-100 ns ion diode pulses no measurable neutral absorption was seen, setting upper limits of (0.12-1.5)x10(14) cm(-3) for ground-state fast neutral atom densities of H, C, N, O, and F. The absence of molecular absorption bands also sets upper limits of (0.16-1.2)x10(15) cm(-3) for common simple molecules. These limits are low enough to rule out ionization of fast neutral atoms as a breakdown mechanism. Breakdown due to ionization of molecules is also found to be unlikely. This technique can now be applied to quantify the role of neutral atoms in other high-power devices.

紫外吸收光谱测量快中性原子在高功率间隙击穿中的作用
在各种各样的高功率器件中,包括电子和离子二极管,z钳和微波发生器,目前受到阳极-阴极间隙击穿的限制。对于这种效应,一个经常讨论的假设是在功率脉冲期间注入整个阳极-阴极间隙的快中性原子的电离。我们描述了一种新开发的诊断工具,它提供了对这一假设的直接检验。采用时间分辨真空紫外吸收光谱法,在SABRE 5 MV, 1 TW应用b离子二极管的10 mm阳极-阴极间隙内,以1 mm的空间分辨率直接探测快中性原子。在Ar射频辉光放电和CO2气体填充时收集的吸收光谱证实了诊断技术的可靠性。在整个50-100 ns离子二极管脉冲中,没有观察到可测量的中性吸收,对H、C、N、O和f的基态快速中性原子密度设置了上限(0.12-1.5)x10(14) cm(-3)。对于普通简单分子,没有分子吸收带也设置了上限(0.16-1.2)x10(15) cm(-3)。这些限制足够低,可以排除快中性原子电离作为击穿机制的可能性。由于分子电离引起的击穿也不太可能。这项技术现在可以应用于量化中性原子在其他高功率器件中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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