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Acoustic testing in a very small space based on a point sound source generated by laser-induced breakdown: Stabilization of plasma formation

机译:基于激光诱导击穿产生的点声源,在很小的空间中进行声学测试:稳定等离子体的形成

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摘要

This paper proposes a method of acoustic testing based on a point source generated by laser-induced breakdown in air. A high-power neodymium-yttrium- aluminum-garnet pulse laser is used in this system for generating the laser-induced breakdown in acoustic fields. Plasma formation can be realized by the laser-induced breakdown if the local intensity of the laser beam reaches 10~(15) W/m~2. The shock wave that is yielded by consuming a part of the plasma energy becomes a sound source. Assuming that the laser beam is focused to a small volume through a convex lens and the sound source by the laser induced-breakdown has nondirectional property, it is possible to create a point source with this technique. Securing the laser light path installs no device for acoustic excitation in acoustic fields. The system is validated by comparing the resonant frequencies of a very small space measured by the laser-induced breakdown and calculated by theoretical model.
机译:本文提出了一种基于点源的声学测试方法,该点源是由激光在空气中引起的击穿产生的。在该系统中使用了大功率钕钇铝石榴石脉冲激光,以在声场中产生激光诱导的击穿。如果激光束的局部强度达到10〜(15)W / m〜2,则可以通过激光诱导的击穿来实现等离子体的形成。通过消耗一部分等离子体能量而产生的冲击波成为声源。假设通过凸透镜将激光束聚焦到较小的体积,并且由于激光诱发的击穿而产生的声源具有无方向性,则可以使用此技术创建点源。固定激光路径不会在声场中安装用于声激发的设备。通过比较由激光引起的击穿测量并由理论模型计算出的很小空间的共振频率来验证该系统。

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