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Ultrasound Characterization of Cavitation Microbubbles Produced by Femtosecond Laser Pulses

机译:飞秒激光脉冲产生的空化微泡的超声表征

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摘要

An ultrasound-based technique capable of detection and spatio-temporal characterization of microbubbles induced in water by femtosecond laser is reported. A highly focused single-element ultrasound transducer was used both to detect passive acoustic emission of the microbubbles and to probe the microbubbles at different stage of their evolution. The location of origin and wall of the microbubble was assessed from temporal characteristics of the passive acoustic emissions and of the pulse-echo signals. The radius of the microbubble was estimated as the distance between the origin of the bubble and its wall. The ultrasound characterization of microbubbles induced by femtosecond pulses agreed well with theoretical predictions based on the well-known Rayleigh-based model of bubble behavior in liquid. The results of this study demonstrate that femtosecond laser-induced microbubbles with typical sizes of several tens of micrometers can be characterized by the developed ultrasound technique.
机译:报道了一种基于超声波的技术,该技术能够检测和测量飞秒激光在水中引起的微泡的时空特性。使用高度集中的单元素超声换能器检测微泡的无源声发射,并探测微泡在其演化的不同阶段。从无源声发射和脉冲回波信号的时间特性评估微泡的起源和壁的位置。将微气泡的半径估计为气泡的起点与其壁之间的距离。飞秒脉冲引起的微气泡的超声表征与基于著名的基于Rayleigh的液体中气泡行为模型的理论预测非常吻合。这项研究的结果表明,飞秒激光诱导的微气泡通常具有几十微米的大小,可以通过开发的超声技术来表征。

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