用于堆叠Blumlein脉冲发生器的UV预电离轨道间隙开关

M. Rhodes
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引用次数: 2

摘要

堆叠blumlein脉冲发生器由平行板传输线组成,对于高梯度、紧凑的电子束加速器和其他应用来说,可能是一种有用的脉冲功率架构。这种脉冲发生器需要低电感,每级快速(<5ns)开关来建立堆栈并产生所需的输出脉冲。我们正在为该应用开发与堆栈紧密集成的轨道间隙开关。我们使用紫外线(UV)来预电离开关,这有利于快速,低抖动和潜在的多通道操作。我们的开关的一个新颖之处在于,紫外线的来源是一个传统的氙气手电筒。这样可以在不影响闪光灯操作的情况下改变开关压力和气体。我们可以在触发或自断模式下操作开关。在这里,我们介绍了在自断模式下工作的两阶段堆叠blumlein的初步结果。我们将开关性能与气体开关的标度规律进行了比较,其中电阻相位上升时间和触发延迟作为气体密度、间隙长度和间隙电压的函数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
UV Pre-Ionized Rail-Gap Switch for Stacked Blumlein Pulse Generators
Stacked blumlein pulse generators comprised of parallel-plate transmission lines are potentially a useful pulse-power architecture for high-gradient, compact, electron-beam accelerators and other applications. Such pulse generators require a low-inductance, fast (<5ns) switch per stage to erect the stack and produce the desired output pulse. We are developing a rail-gap switch tightly integrated with the stack for this application. We employ ultraviolet light (UV) to pre-ionize the switch, which facilitates prompt, low-jitter, and potentially multi channel operation. A novel aspect of our switch is that the source of the UV is a conventional Xenon flashlamp. This allows variation of the switch pressure and gas without affecting the flashlamp operation. We can operate our switch in either triggered or self-breaking mode. Here we present initial results of a two-stage, stacked blumlein operating in self-break mode. We compare the switch performance to gas-switch scaling laws with respect to resistive-phase risetime and trigger delay as a function of gas density, gap-length, and gap-voltage.
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