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Dynamics of the spallative ablation of a GaAs surface irradiated by femtosecond laser pulses

机译:飞秒激光脉冲辐照的GaAs表面剥蚀的动力学

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摘要

The spallation of a nanometer-thick melt layer on a GaAs surface during its ablation by femtosecond laser pulses occurs with subnanosecond delays and lift-off velocities that depend on the laser fluence after its complete thermal (hydrodynamic) expansion/acoustic relaxation. The position of the spall interface in the melt is determined by the depth of the formation of a two-dimensional subsurface layer of nanobubbles (nanofoam), whereas the strongly heated surface layer of the melt above the nanofoam is partially removed in the form of a vapor-drop mixture. At the thermal expansion stage, acoustic reverberations are observed in the melt layer and characterize both the dynamics of an increase in its thickness and the shift of the cavitation region (nanofoam) inside the melt. Moreover, these reverberations can additionally stimulate spallation, promoting cavitation in the completely unloaded melt in the case of passage of a weak rarefaction wave.
机译:飞秒激光脉冲烧蚀GaAs表面上的纳米厚熔融层时,会发生亚纳秒级的延迟和剥离速度,这取决于其完全热(流体动力学)膨胀/声弛豫后的激光通量。熔体中剥落界面的位置取决于纳米气泡(纳米泡沫)的二维次表面层的形成深度,而纳米泡沫上方熔体的强烈加热的表面层则以纳米颗粒的形式被部分去除。蒸气滴混合物。在热膨胀阶段,在熔体层中观察到声学混响,并表征了其厚度增加的动力学以及熔体内部空化区域(纳米泡沫)的移动。而且,这些混响还可以刺激散裂,在弱的稀疏波通过的情况下,在完全卸载的熔体中促进空化作用。

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