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Hydrodynamic modeling and time-resolved imaging reflectometry of the ultrafast laser-induced ablation of a thin gold film

机译:超快激光诱导的薄金膜的流体动力学建模和时间分辨成像反射测量

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摘要

The ablation of thin metal films using ultrafast laser radiation represents a standard processing procedure in laser technology. However, looking closer to the resulting structures, the arising topology deviates strongly from the expected one. Ablation of thin gold films using ultrafast laser radiation with a Gaussian-shaped spatial intensity distribution results in flat topologies. By synergistically combining space and time-resolved reflectometry with expanded two-temperature hydrodynamic modeling, we explain the formation of bulging and rupture of the thin film-surface by the expansion of strongly stretched liquid material due to the induced rarefaction wave propagating towards the substrate. Also, the formation of a flat ablation structure is described by the interplay of two rarefaction waves, one propagating towards the substrate and the other one propagating towards the vacuum boundary, within the completely molten film. The simulated topology agrees excellent with the experimentally observed ablation structure. Besides, all simulated stages of excitation of the gold film, namely electron-phonon non-equilibrium, hydrodynamic expansion, and rupture, are confirmed by space and time-resolved pump-probe reflectometry.
机译:使用超快激光辐射的薄金属膜的消融代表了激光技术的标准加工过程。然而,看起来更接近所产生的结构,所产生的拓扑强烈地偏离预期的拓扑。使用超快激光辐射的薄金膜消融,具有高斯形空间强度分布导致平板拓扑。通过将空间和时间分辨反射仪与膨胀的两温液动力学建模协同组合,我们通过朝向基板传播的诱导稀疏波的膨胀液体膨胀来解释薄膜表面的凸出和破裂的形成。而且,通过两个稀疏波的相互作用来描述扁平消融结构的形成,在完全熔融薄膜内朝向基板传播的另一个稀疏波,另一个朝向真空界面传播。模拟拓扑结构与实验观察到的消融结构同意。此外,通过空间和时间分辨泵探针反射仪确认了所有模拟的金膜的激发阶段,即电子 - 声子非平衡,流体动力膨胀和破裂。

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