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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Shot-to-shot correlation of residual energy and optical absorptance in femtosecond laser ablation
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Shot-to-shot correlation of residual energy and optical absorptance in femtosecond laser ablation

机译:飞秒激光烧蚀中剩余能量和光学吸收率的逐次相关性

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摘要

In this paper, we perform a shot-to-shot detailed study of how residual thermal energy correlates to the optical absorptance change due to laser-induced surface structural modifications in multi-shot femtosecond laser ablation. We observe an overall enhancement for residual thermal coupling and absorptance in air. Surprisingly, residual thermal coupling in air shows a non-monotonic dependence on pulse number and reaches a minimum value after a certain number of pulses, while these behaviors are not seen in absorptance. In vacuum, however, both suppression and enhancement are seen in residual energy coupling although absorptance is always enhanced. To explain these observations, we suggest that air plasma plays a dominant role in thermal coupling at a relatively low number of applied pulses, while the formation of a cavity plays a dominant role at a high number of pulses.
机译:在本文中,我们进行了逐项详细的研究,研究了剩余的热能如何与由于多次激发飞秒激光烧蚀中的激光诱导的表面结构改变而引起的光学吸收率变化相关。我们观察到空气中残余热耦合和吸收率的总体增强。出人意料的是,空气中的残余热耦合对脉冲数显示出非单调依赖性,并且在一定数量的脉冲后达到最小值,而这些行为在吸收率中未见。然而,在真空中,尽管吸收率始终会提高,但在残余能量耦合中会同时看到抑制和增强。为了解释这些发现,我们建议在相对较少的施加脉冲数下,空气等离子体在热耦合中起主要作用,而在大量脉冲下,空腔的形成起主要作用。

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