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Pulse-width-dependent surface ablation of copper and silver by ultrashort laser pulses

机译:超短激光脉冲对铜和银的脉冲宽度依赖性表面烧蚀

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摘要

The single-shot spallation thresholds for copper and silver surfaces demonstrate a considerable IR-laser (1030 nm) pulse-width dependent increase over a range of 0.2-12 ps for the former material and a very weak increase for the latter one, while the corresponding thresholds for visible (515 nm) laser pulses remain almost constant. The IR-laser increase of the ablation thresholds is related to two-photon interband (d-s) absorption in copper, contrasting with the linear absorption of visible laser pulses in this material. In silver, common weakly sublinear dependences on the laser pulsewidth were observed, ruling out possible multi-photon-either three(four)-photon in IR, or two-photon in the visible range-interband transitions in this material. Moreover, electron-lattice thermalization times of 1-2 ps were evaluated for these materials in the spallative ablation regime, contrasting strongly with the previously theoretically predicted multi-picosecond thermalization times.
机译:铜和银表面的单次散裂阈值表明,前一种材料在0.2-12 ps的范围内有相当大的IR激光(1030 nm)脉宽依赖于脉冲宽度的增加,而后一种材料的增加幅度很小。可见(515 nm)激光脉冲的相应阈值几乎保持恒定。消融阈值的IR激光增加与铜中的双光子带间(d-s)吸收有关,与此材料中可见激光脉冲的线性吸收形成了对比。在银中,观察到常见的对激光脉冲宽度的弱次线性依赖性,从而排除了该材料中可能存在的多光子-IR中的三光子或四光子的可见光-带间跃迁。此外,在散裂烧蚀方式下,这些材料的电子晶格热化时间为1-2 ps,与先前理论上预测的多皮秒热化时间形成鲜明对比。

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