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Effects of pulse width on nascent laser-induced bubbles for underwater laser-induced breakdown spectroscopy

机译:水下激光诱导击穿光谱中脉冲宽度对新生激光诱导气泡的影响

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摘要

The reason for the significant advantage offered by long-pulse (150 ns) irradiation in underwater laser-induced breakdown spectroscopy (LIBS) is investigated from the point of view of the behavior of nascent cavitation bubbles. Shadowgraphs of nascent bubbles generated by pulsed laser irradiation of Cu targets in water were observed for two different pulse widths, 20 ns and 150 ns. It is clearly seen that the nascent bubble is formed at the leading edge of the laser pulse profile, regardless of the pulse width. Bubbles generated by a 20-ns pulse are characterized by a flat-shape filled with dense matter with intense optical emission, which is in contrast to more hemispherical low-density bubbles observed under the irradiation by a 150-ns pulse. The behavior of the nascent bubbles is consistent with the behavior of the later plasma in the bubbles, which is crucial for observation of well-defined atomic spectral lines for underwater LIBS.
机译:从新生空化气泡的行为角度研究了长脉冲(150 ns)辐照在水下激光诱导击穿光谱(LIBS)中具有显着优势的原因。在两个不同的脉冲宽度(20 ns和150 ns)下,观察到了铜靶在水中的脉冲激光辐照所产生的新生气泡的阴影图。可以清楚地看到,无论脉冲宽度如何,新生气泡都在激光脉冲轮廓的前沿形成。由20 ns脉冲产生的气泡的特征是充满致密物质并具有强烈​​的光发射的扁平形状,这与在150 ns脉冲的照射下观察到的半球形低密度气泡相反。新生气泡的行为与气泡中后期等离子体的行为一致,这对于观察水下LIBS的明确定义的原子光谱线至关重要。

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