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Laser-induced damage thresholds of gold, silver and their alloys in air and water

机译:空气和水中激光对金,银及其合金造成的损伤阈值

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The nanosecond-laser-induced damage thresholds of gold, silver and gold-silver alloys of various compositions in air and water have been measured for single-shot irradiation conditions. The experimental results are analyzed theoretically by solving the heat flow equation for the samples irradiated in air and in water taking into account vapor nucleation at the solid-water interface. The damage thresholds of Au-Ag alloys are systematically lower than those for pure metals, both in air and water that is explained by lower thermal conductivities of the alloys. The thresholds measured in air agree well with the calculated melting thresholds for all samples. The damage thresholds in water are found to be considerably higher, by a factor of similar to 1.5, than the corresponding thresholds in air. This cannot be explained, in the framework of the used model, neither by the conductive heat transfer to water nor by the vapor pressure effect. Possible reasons for the high damage thresholds in water such as scattering of the incident laser light by the vapor-liquid interface and the critical opalescence in the superheated water are suggested. Optical pump-probe measurements have been performed to study the reflectance dynamics of the surface irradiated in air and water. Comparison of the transient reflectance signal with the calculated nucleation dynamics provides evidence that the both suggested scattering mechanisms are likely to occur during metal ablation in water. (C) 2016 Elsevier B.V. All rights reserved.
机译:对于单次照射条件,已经测量了纳秒级激光诱导的空气,水中各种成分的金,银和金银合金的损伤阈值。考虑到固-水界面处的蒸汽成核作用,通过求解空气和水中照射的样品的热流方程,从理论上分析了实验结果。在空气和水中,Au-Ag合金的损伤阈值都系统地低于纯金属的损伤阈值,这是因为合金的导热系数较低。在空气中测得的阈值与所有样品的熔融阈值计算得很好。发现水中的损坏阈值比空气中的相应阈值高出大约1.5倍。在所用模型的框架中,这既不能通过传导给水的热传递也不能通过蒸气压的作用来解释。提出了水中损坏阈值高的可能原因,例如入射激光通过气液界面的散射以及过热水中的临界乳光。已经进行了光学泵浦探针测量,以研究在空气和水中照射的表面的反射动力学。将瞬态反射信号与计算出的形核动力学进行比较,可提供证据表明两种建议的散射机制都可能在水中金属烧蚀过程中发生。 (C)2016 Elsevier B.V.保留所有权利。

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