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首页> 外文期刊>The Journal of Chemical Physics >Laser ablation at solid-liquid interfaces: An approach from optical emission spectra
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Laser ablation at solid-liquid interfaces: An approach from optical emission spectra

机译:固-液界面处的激光烧蚀:一种基于光发射光谱的方法

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The emission spectra from the solid-liquid interface irradiated by a pulsed laser were studied. The solid target used in this study was graphite and boron nitride, and the liquid in which the target was immersed was water, benzene, n-hexane, and carbon tetrachloride. The results showed strong continuous spectrum immediately after a pulse shot, whereas after approximate to 100 ns later from the irradiation it was greatly reduced, and instead, the emission from small molecules dominated the spectra. The line spectra of small molecules observed in the later time range indicate the chemical reaction between the ablated species and the species originated from the liquid molecules. The intensity of the continuous spectrum was very prominent compared to what has been observed for solid-gas interfaces. This is due to rapid electron ion recombination or bremsstrahlung due to highly confined interface plasma. (C) 2000 American Institute of Physics. [S0021-9606(00)70619-2]. [References: 35]
机译:研究了脉冲激光辐照下固液界面的发射光谱。本研究中使用的固体靶材是石墨和氮化硼,浸入靶材的液体是水,苯,正己烷和四氯化碳。结果显示,在脉冲射击后立即具有很强的连续光谱,而在照射后约100 ns后,光谱大大降低,取而代之的是,小分子的发射主导了光谱。在较晚的时间范围内观察到的小分子的线谱表明,烧蚀的物种与起源于液体分子的物种之间发生了化学反应。与固体气体界面相比,连续光谱的强度非常突出。这是由于高度受限的界面等离子体导致的快速电子离子重组或or致辐射。 (C)2000美国物理研究所。 [S0021-9606(00)70619-2]。 [参考:35]

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