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Effects of laser energy density on impulse coupling coefficient of laser ablation of water for propulsion

机译:激光能量密度对推进水激光烧蚀脉冲耦合系数的影响

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摘要

Time-resolved force sensing and intensified charge-coupled device (ICCD) imaging techniques were applied to the study of the effects of laser energy density on impulse coupling coefficient of laser ablation of water for propulsion. A Transversely Excited at Atmospheric pressure (TEA) CO_2 laser operated at 10.6 μm, 30 J pulse energy was used to ablate water contained in a quadrate quartz container. Net imparted impulse and coupling coefficients were derived from the force sensor data and relevant results were presented for various laser energy densities. ICCD imaging was used in conjunction with the dynamic force techniques to examine the dependencies on laser energy density. Results showed that the impulse coupling coefficient could reach a maximum value when laser energy density was about 10~5 J/m~2, and it would increase before laser energy got to this point and would decrease after this point, and ICCD imaging supplied important phenomenon to explain this variation, which were water ablation before laser energy density got to 105 J/m2 and laser-induced air-breakdown with water as an induction when laser energy density was higher than 10~5 J/m~2.
机译:将时间分辨力传感和增强电荷耦合器件(ICCD)成像技术用于研究激光能量密度对推进水激光烧蚀的脉冲耦合系数的影响。使用大气压横向激发(TEA)CO_2激光以10.6μm的波长,30 J的脉冲能量消融方形石英容器中的水。从力传感器数据得出净传递脉冲和耦合系数,并给出了各种激光能量密度的相关结果。 ICCD成像与动态力技术结合使用,以检查对激光能量密度的依赖性。结果表明,当激光能量密度约为10〜5 J / m〜2时,脉冲耦合系数可以达到最大值,在激光能量到达此点之前脉冲耦合系数会增大,此后会减小,ICCD成像提供了重要的条件。解释这种变化的现象是当激光能量密度高于10〜5 J / m〜2时,在激光能量密度达到105 J / m2之前进行水烧蚀,并以水为诱发的激光诱导的空气分解。

著录项

  • 来源
    《Applied Physics》 |2011年第1期|p.239-243|共5页
  • 作者单位

    Zhuangbei Institute of Technology, Post Box 3380-86, Huairou Dis., Beijing 101416, China;

    Zhuangbei Institute of Technology, Post Box 3380-86, Huairou Dis., Beijing 101416, China;

    Zhuangbei Institute of Technology, Post Box 3380-86, Huairou Dis., Beijing 101416, China;

    Zhuangbei Institute of Technology, Post Box 3380-86, Huairou Dis., Beijing 101416, China;

    Zhuangbei Institute of Technology, Post Box 3380-86, Huairou Dis., Beijing 101416, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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