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Laser-triggered high-voltage plasma switching with diffractive optics

机译:带衍射光学器件的激光触发高压等离子体开关

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High-power lasers can be used to induce ionization of gases and thereby enable rapid triggering of electrical discharge devices, potentially faster than any devices based on mechanical or solid-state switching. With diffractive optical elements (DOEs) the laser light can conveniently be directed to positions within the gas so that an electrical discharge between two high-voltage electrodes is triggered reliably and rapidly. Here we report on two different types of DOE used for creating an electrical discharge in pure argon for potential high-voltage applications. One is the diffractive equivalent of a conventional axicon that yields an extended, and continuous, high-intensity focal region between the electrodes. The other is a multiple-focal-distance kinoform—a DOE that is designed to produce a linear array of 20 discrete foci, with high peak intensities, between the electrodes. We show that DOEs enable efficient, rapid switching and may provide increased flexibility in the design of novel electrode configurations.
机译:高功率激光器可用于诱导气体电离,从而实现放电装置的快速触发,这可能比任何基于机械或固态切换的装置更快。使用衍射光学元件(DOE),可以方便地将激光引导到气体中的位置,以便可靠,迅速地触发两个高压电极之间的放电。在这里,我们报告了两种不同类型的DOE,这些DOE用于在纯氩中为潜在的高压应用产生放电。一个是常规轴锥的衍射等效物,在电极之间产生一个扩展的,连续的,高强度的聚焦区域。另一个是多焦距的Kinoform,一种DOE,设计用于在电极之间产生20个离散焦点的线性阵列,并具有较高的峰强度。我们表明,DOE可以实现高效,快速的切换,并且可以在新型电极配置的设计中提供更大的灵活性。

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