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首页> 外文期刊>Applied Surface Science >Effect of fs/ps laser pulsewidth on ablation of metals and silicon in air and liquids, and on their nanoparticle yields
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Effect of fs/ps laser pulsewidth on ablation of metals and silicon in air and liquids, and on their nanoparticle yields

机译:fs / ps激光脉冲宽度对烧蚀空气和液体中的金属和硅及其纳米粒子产率的影响

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摘要

The effect of laser pulsewidth, tuned in the range tau = 0.3-10 ps, on infrared (IR) laser ablation (LA) thresholds of bulk gold, silver and silicon in air and in liquid environments (deionized water, isopropyl alcohol (IPA)) was studied in this work. The influence of laser pulsewidth on the morphology and yield of the ejected nanoparticles (NPs), as well as its impact on the efficiency of NP generation, was studied by UV-vis spectral measurement of the extinction coefficient spectra of NP colloids, fabricated by multi-pass ablation of bulk targets in both solvents at different pulse duration values, by analytical disc centrifuge and by high-resolution scanning electron mi-croscopy. The ablation thresholds are raising with the increase of laser pulsewidth, exhibiting sublinear dependences. The extinction coefficient dependence on tau exhibited a non-monotonous character in case of water medium for all materials, and was gradually descending in case of LA in IPA. Additional MD-TTM (molecular dynamics-two-temperature model) modeling was performed for single-shot laser exposition of bulk Au target in air with tau = 0.3 ps and 4 ps, which allowed distinguishing the main mechanisms of the material removal, the formation of NPs, and the observed crater topography. The performed simulations supported the trend on the ablation threshold increase with the increase of laser pulse duration.
机译:在tau = 0.3-10 ps范围内调整的激光脉冲宽度对空气和液体环境(去离子水,异丙醇(IPA))中大量金,银和硅的红外(IR)激光烧蚀(LA)阈值的影响)已在这项工作中进行了研究。通过紫外可见光谱法对纳米胶体的消光系数光谱进行紫外光谱测量,研究了激光脉冲宽度对喷射纳米颗粒(NPs)的形态和产率及其对NP产生效率的影响。通过分析盘式离心机和高分辨率扫描电子显微镜对两种溶剂在不同脉冲持续时间值下的大体积目标进行一次烧蚀。烧蚀阈值随着激光脉冲宽度的增加而提高,表现出亚线性依赖性。在所有材料的水介质情况下,对tau的消光系数依赖性都显示出非单调的特征,而在IPA中的LA情况下,消光系数的依赖性逐渐​​降低。针对tau = 0.3 ps和4 ps的空气中大块金靶的单次激光曝光,进行了附加的MD-TTM(分子动力学-双温度模型)建模,这可以区分材料去除,形成的主要机理。 NPs和观测到的火山口地形。所执行的仿真支持了随着激光脉冲持续时间的增加,消融阈值增加的趋势。

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