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Micro-gun based on laser pulse propulsion

机译:基于激光脉冲推进的微枪

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摘要

This paper proposes a novel “micro-gun” structure for laser pulse propulsion. The “micro-bullets” (glass microspheres) are irradiated by a laser pulse with a 10 ns duration in a dynamic process. Experimental parameters such as the microsphere diameter and the laser pulse energy are varied to investigate their influence on laser pulse propulsion. The energy field and spatial intensity distribution in the capillary tube were simulated using a three-dimensional finite-difference time-domain method. The experimental results demonstrate that the propulsion efficiency is dependent on the laser pulse energy and the microsphere size. The propulsion modes and sources of the propelling force were confirmed through direct observation and theoretical calculation. Waves also generated by light-pressure and thermal expansions assisted the propulsion.
机译:本文提出了一种用于激光脉冲推进的新型“微枪”结构。在动态过程中,用10 ns持续时间的激光脉冲照射“微型子弹”(玻璃微球)。实验参数如微球直径和激光脉冲能量被改变以研究它们对激光脉冲推进的影响。使用三维有限差分时域方法模拟了毛细管中的能量场和空间强度分布。实验结果表明,推进效率取决于激光脉冲能量和微球尺寸。通过直接观察和理论计算确定了推进力的推进方式和来源。轻压和热膨胀也产生的波有助于推进。

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