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Synergetic effects of double laser pulses for the formation of mild plasma in water: toward non-gated underwater laser-induced breakdown spectroscopy.

机译:双重激光脉冲在水中形成温和等离子体的协同效应:朝向非门控水下激光诱导击穿光谱。

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摘要

We experimentally study the dynamics of the plasma induced by the double-laser-pulse irradiation of solid target in water, and find that an appropriate choice of the pulse energies and pulse interval results in the production of an unprecedentedly mild (low-density) plasma, the emission spectra of which are very narrow even without the time-gated detection. The optimum pulse interval and pulse energies are 15-30 μs and about ~1 mJ, respectively, where the latter values are much smaller than those typically employed for this kind of study. In order to clarify the mechanism for the formation of mild plasma we examine the role of the first and second laser pulses, and find that the first pulse produces the cavitation bubble without emission (and hence plasma), and the second pulse induces the mild plasma in the cavitation bubble. These findings may present a new phase of underwater laser-induced breakdown spectroscopy.
机译:我们通过实验研究了固体靶标在水中的双激光脉冲辐照引起的等离子体动力学,发现适当选择脉冲能量和脉冲间隔会导致产生前所未有的温和(低密度)等离子体,即使没有时间选通检测,其发射光谱也非常窄。最佳脉冲间隔和脉冲能量分别为15-30μs和约〜1 mJ,其中后者的值比通常用于此类研究的值小得多。为了阐明形成轻度等离子体的机理,我们检查了第一和第二激光脉冲的作用,发现第一脉冲产生了空化气泡而没有发射(因此没有等离子体),第二脉冲诱导了轻度等离子体在空化泡沫中。这些发现可能会提出水下激光诱导击穿光谱的新阶段。

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