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Reconstruction of laser-induced cavitation bubble dynamics based on a Fresnel propagation approach

机译:基于菲涅耳传播方法的激光诱导空化气泡动力学重建

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A single laser-induced cavitation bubble in transparent liquids has been studied through a variety of experimental techniques. High-speed video with varying frame rate up to 20 x 10(7) fps is the most suitable to study nonsymmetric bubbles. However, it is still expensive for most researchers and more affordable (lower) frame rates are not enough to completely reproduce bubble dynamics. This paper focuses on combining the spatial transmittance modulation (STM) technique, a single shot cavitation bubble and a very simple and inexpensive experimental technique, based on Fresnel approximation propagation theory, to reproduce a laser-induced cavitation spatial dynamics. Our results show that the proposed methodology reproduces a laser-induced cavitation event much more accurately than 75,000 fps video recording. In conclusion, we propose a novel methodology to reproduce laser-induced cavitation events that combine the STM technique with Fresnel propagation approximation theory that properly reproduces a laser-induced cavitation event including a very precise identification of the first, second, and third collapses of the cavitation bubble. (C) 2015 Optical Society of America
机译:通过多种实验技术研究了透明液体中单个激光诱导的气蚀气泡。可变帧率高达20 x 10(7)fps的高速视频最适合研究非对称气泡。但是,对于大多数研究人员而言,它仍然很昂贵,而且负担得起的(较低的)帧速率不足以完全再现气泡的动力学。本文着重于结合空间透射率调制(STM)技术,单发空化气泡和基于菲涅耳近似传播理论的非常简单且廉价的实验技术,以再现激光诱导的空化空间动力学。我们的结果表明,与75,000 fps的视频录制相比,所提出的方法能够更准确地再现激光诱发的气蚀事件。总之,我们提出了一种新颖的方法来重现激光诱导的空化事件,该方法将STM技术与菲涅耳传播近似理论相结合,可以正确地重现激光诱导的空化事件,包括非常精确地识别出第一,第二和第三次塌陷。空化泡沫。 (C)2015年美国眼镜学会

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