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Acoustic monitoring method and system in laser-induced optical breakdown (LIOB)

机译:激光诱导光击穿的声波监测方法和系统

摘要

An acoustic monitoring method and system in laser-induced optical breakdown (LIOB) provides information which characterize material which is broken down, microbubbles in the material, and/or the microenvironment of the microbubbles. In one embodiment of the invention, femtosecond laser pulses are focused just inside the surface of a volume of aqueous solution which may include dendrimer nanocomposite (DNC) particles. A tightly focused, high frequency, single-element ultrasonic transducer is positioned such that its focus coincides axially and laterally with this laser focus. When optical breakdown occurs, a microbubble forms and a shock or pressure wave is emitted (i.e., acoustic emission). In addition to this acoustic signal, the microbubble may be actively probed with pulse-echo measurements from the same transducer. After the microbubble forms, received pulse-echo signals have an extra pulse, describing the microbubble location and providing a measure of axial microbubble size. Wavefield plots of successive recordings illustrate the generation, growth, and collapse of microbubbles due to optical breakdown. These same plots can also be used to quantify LIOB thresholds.
机译:激光诱导的光学击穿(LIOB)中的声学监测方法和系统可提供信息,这些信息可表征破碎的材料,材料中的微气泡和/或微气泡的微环境。在本发明的一个实施例中,飞秒激光脉冲恰好聚焦在一定体积的水溶液的内部,该水溶液可以包括树枝状聚合物纳米复合材料(DNC)颗粒。放置紧密聚焦的高频单元件超声换能器,使其焦点在轴向和横向上与该激光焦点重合。当发生光击穿时,形成微气泡并发射冲击波或压力波(即,声发射)。除了此声信号之外,还可以使用来自同一换能器的脉冲回波测量来主动探测微泡。在微泡形成之后,接收到的脉冲回波信号会有一个额外的脉冲,描述了微泡的位置并提供了轴向微泡尺寸的度量。连续记录的波场图说明了由于光学击穿而引起的微气泡的产生,生长和破裂。这些相同的图也可以用于量化LIOB阈值。

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