Laser Triggered Gas Switches Utilizing Beam Transport Through 1 MΩ-cm Deionized Water

N. Zameroski, J. Lehr, J. W. Woodworth, J. Blickem, Z. Wallace, V. Anaya, J. Corley, J. Lott, K. Hodge
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Abstract

We report on the successful attempts to trigger high voltage pressurized gas switches by utilizing beam transport through 1 MΩ-cm deionized water. The wavelength of the laser radiation was 532 nm. We have investigated Nd:YAG laser triggering of a 6 MV, SF6 insulated gas switch for a range of laser and switch parameters. Laser wavelength of 532 nm with nominal pulse lengths of 10 ns full width half maximum (FWHM) were used to trigger the switch. The laser beam was transported through 67 cm-long cell of 1 MOmega-cm deionized water constructed with anti reflection UV grade fused silica windows. The laser beam was then focused to form a breakdown arc in the gas between switch electrodes. Less than 10 ns jitter in the operation of the switch was obtained for laser pulse energies of between 80-110 mJ. Breakdown arcs more than 35 mm-long were produced by using a 70 cm focusing optic.
激光触发气体开关利用光束传输通过1 MΩ-cm去离子水
我们报告了通过1 MΩ-cm去离子水利用光束传输触发高压加压气体开关的成功尝试。激光辐射波长为532 nm。我们研究了Nd:YAG激光触发6 MV, SF6绝缘气体开关的激光和开关参数范围。激光波长为532 nm,标称脉冲长度为10 ns的全宽半最大(FWHM)触发开关。激光束通过由抗反射紫外级熔融石英窗构成的67 cm长1 ω -cm去离子水池传输。然后激光束被聚焦,在开关电极之间的气体中形成击穿电弧。当激光脉冲能量在80-110 mJ之间时,开关的工作抖动小于10 ns。通过使用70厘米聚焦光学产生超过35毫米长的击穿弧。
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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