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Simultaneous observation of nascent plasma and bubble induced by laser ablation in water with various pulse durations

机译:同时观察不同脉冲持续时间在水中激光烧蚀引起的新生等离子体和气泡

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摘要

We investigate the effects of pulse duration on the dynamics of the nascent plasma and bubble induced by laser ablation in water. To examine the relationship between the nascent plasma and the bubble without disturbed by shot-to-shot fluctuation, we observe the images of the plasma and the bubble simultaneously by using two intensified charge coupled device detectors. We successfully observe the images of the plasma and bubble during the pulsed-irradiation, when the bubble size is as small as 20 μm. The light-emitting region of the plasma during the laser irradiation seems to exceed the bubble boundary in the case of the short-pulse (30-ns pulse) irradiation, while the size of the plasma is significantly smaller than that of the bubble in the case of the long-pulse (100-ns pulse) irradiation. The results suggest that the extent of the plasma quenching in the initial stage significantly depends on the pulse duration. Also, we investigate how the plasma-bubble relationship in the very early stage affects the shape of the atomic spectral lines observed at the later delay time of 600 ns. The present work gives important information to obtain high quality spectra in the application of underwater laser-induced breakdown spectroscopy, as well as to clarify the mechanism of liquid-phase laser ablation.
机译:我们研究了脉冲持续时间对水中激光消融诱导的新生血浆和气泡动力学的影响。为了检查初生等离子体与气泡之间的关系而不受每次发射波动的干扰,我们使用两个增强的电荷耦合器件检测器同时观察了等离子体和气泡的图像。当气泡尺寸小至20μm时,我们成功地观察到了脉冲辐射过程中的等离子体和气泡图像。在短脉冲(30 ns脉冲)照射的情况下,激光照射过程中等离子体的发光区域似乎超过了气泡边界,而等离子体的大小则明显小于激光照射时气泡的大小。长脉冲(100 ns脉冲)照射的情况。结果表明,初始阶段的等离子体猝灭程度明显取决于脉冲持续时间。此外,我们研究了在很早的阶段中的等离子体气泡关系如何影响在后来的600μns延迟时间观察到的原子光谱线的形状。目前的工作为在水下激光诱导击穿光谱学中获得高质量光谱以及阐明液相激光烧蚀的机理提供了重要的信息。

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