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Laser target triggering of gas switches.

机译:激光目标触发气体开关。

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摘要

Laser target triggering has been investigated at the University of Missouri as a method to reduce the laser energy required to trigger a laser triggered gas switch. Laser targets were solid materials embedded into the cathode of a LTGS that acted as a source of plasma when struck by a triggering laser. The expanding plasma altered the electric field in the switch, resulting in switch closure. Aluminum, graphite and tungsten were chosen as laser target materials based on several criteria including the results of measuring the liberated charge as a function of laser energy in a vacuum. Triggering was performed on the Tiger pulsed power machine which pulse charged a LTGS containing a laser target to between 185 kV and 330 kV. The LTGS was triggered by directing a laser pulse from a Nd:YAG laser onto the laser target. Experiments varied laser energy, spot size on the laser target surface, target material and laser wavelength. The project successfully demonstrated reliable triggering with less than 1 mJ of laser energy with both 1064 and 266 nm wavelength laser pulses. Findings will be used in the design of switches for LTD-based pulsed power accelerators.
机译:密苏里大学已对激光目标触发进行了研究,以此作为减少触发激光触发气体开关所需的激光能量的方法。激光靶是嵌入LTGS阴极的固体材料,当被触发激光击中时,LTGS的阴极充当等离子体的来源。膨胀的等离子体改变了开关中的电场,导致开关闭合。根据几种标准选择了铝,石墨和钨作为激光靶材,包括在真空中测量释放的电荷随激光能量变化的结果。在Tiger脉冲动力机上执行触发,该脉冲机将包含激光靶的LTGS脉冲充电至185 kV至330 kV之间。 LTGS是通过将激光脉冲从Nd:YAG激光引导到激光目标上触发的。实验会改变激光能量,激光目标表面上的光斑大小,目标材料和激光波长。该项目成功展示了1064和266 nm波长的激光脉冲具有不到1 mJ的激光能量可靠触发。研究结果将用于基于LTD的脉冲功率加速器的开关设计中。

著录项

  • 作者

    Sullivan, Dustin L.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2008
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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