Ripple formation with intense Gaussian femtosecond laser pulses close to the damage threshold

IF 1.1 Q3 PHYSICS, MULTIDISCIPLINARY
U. Teubner, A. Andreev, V. Makin, J. Imgrunt
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引用次数: 0

Abstract

The formation of laser-induced periodic surface structures (LIPSS or ripples) is a topic that has been investigated for almost 60 years. More recently with the advent of ultrashort laser pulses this subject has regained interest, in particular, due to interaction regimes that have not been present so far. Consequently a lot of work has been done in that field, especially with comprehensive experimental and theoretical investigations of the scaling of ripple parameters on laser pulse duration, wavelength, applied fluence, shot number and so on. However, there are still a lot of questions. The present work addresses an important issue on that subject. In particular, ripple formation is investigated at high laser intensity, namely at an intensity sufficiently large to generate a femtosecond-laser induced plasma. Thus ripple formation occurs close to damage threshold. Experimental results and theoretical discussion of ripple formation and the interrelation to laser pulse energy deposition, energy transport and sample damage originating from the optical interaction and additional thermal effects, respectively, are discussed. Most important, a reduction of ripple formation threshold with laser intensity and fluence, respectively, has been observed which is associated by a super-linear increase of the ripple area. The scaling of this reduction with laser fluence obtained from theoretical estimates is in good agreement with the experimental data.
强高斯飞秒激光脉冲接近损伤阈值时的纹波形成
激光诱导周期性表面结构(LIPSS或波纹)的形成是一个研究了近60年的课题。最近,随着超短激光脉冲的出现,这一主题重新引起了人们的兴趣,特别是由于迄今为止尚未出现的相互作用机制。因此,在这一领域进行了大量的工作,特别是对纹波参数对激光脉冲持续时间、波长、施加能量、射次数等的影响进行了全面的实验和理论研究。然而,仍然有很多问题。目前的工作涉及关于这一主题的一个重要问题。特别是,在高激光强度下,即在足以产生飞秒激光诱导等离子体的强度下,研究了纹波的形成。因此,波纹形成发生在接近损伤阈值。本文分别讨论了激光脉冲能量沉积、能量输运以及由光相互作用和附加热效应引起的样品损伤与纹波形成的相互关系。最重要的是,已观察到纹波形成阈值分别随激光强度和通量的减小而减小,这与纹波面积的超线性增加有关。从理论估计中得到的激光通量与这种还原的比例关系与实验数据很好地吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Physics Communications
Journal of Physics Communications PHYSICS, MULTIDISCIPLINARY-
CiteScore
2.60
自引率
0.00%
发文量
114
审稿时长
10 weeks
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