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Laser fluence dependence of ripple formation on fused silica by femtosecond laser irradiation

机译:飞秒激光辐照对熔融石英波纹形成的激光能量密度依赖性

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摘要

Laser-induced periodic surface structures (LIPSS, ripples) have attracted great attentions in the fields of surfaces and interfaces, yet their origin still remains puzzling, especially for dielectrics. In this study, a comparative study of the formation of two distinct classes of ripples on fused silica is provided by carefully adjusting the key parameters of laser fluence and pulse number. Two different ablation regimes are identified for LIPSS formation. The threshold fluence of F=4.07J/cm(2) is defined for the transition from high spatial frequency LIPSS to low spatial frequency LIPSS, which is independent of pulse number. Pulse-to-pulse results show the unique formation processes for each class of LIPSS in different fluence regimes. In the fluence range below the transition threshold (2.54J/cm(2)F4.07J/cm(2)), the formation of high spatial frequency LIPSS starts from randomly distributed nanogrooves perpendicularly orientated to E, indicating the excitation of surface-plasmon polaritons as a primary formation mechanism. In the higher fluence regime (F4.07J/cm(2)), the development of a thin rim surrounding an ablation crater into straight ridges spreading across the crater is observed for the formation of low spatial frequency LIPSS, suggesting a thermal and fluid process involved in the LIPSS formation. The results show that laser fluence plays a key role in controlling the origin of ripples, while pulse number mainly contributes to the subsequent growth of microstructures.
机译:激光诱导的周期性表面结构(LIPSS,波纹)在表面和界面领域引起了极大的关注,但是它们的起源仍然令人困惑,特别是对于电介质。在这项研究中,通过仔细调整激光能量密度和脉冲数的关键参数,可以比较研究熔融石英上两种不同类型的波纹的形成。确定了用于LIPSS形成的两种不同的消融方案。为从高空间频率LIPSS到低空间频率LIPSS的过渡定义了F = 4.07J / cm(2)的阈值通量,而与脉冲数无关。脉冲到脉冲的结果表明,在不同的注量范围内,每类LIPSS的独特形成过程。在低于过渡阈值(2.54J / cm(2) 4.07J / cm(2)),观察到围绕消融弹孔的薄边缘发展成散布在弹孔中的直脊,形成低空间频率的LIPSS,表明存在热力和流体LIPSS形成过程。结果表明,激光能量密度在控制波纹的起因中起着关键作用,而脉冲数则主要对随后的微结构的生长有贡献。

著录项

  • 来源
    《Applied Physics》 |2019年第4期|256.1-256.8|共8页
  • 作者

    Shi Xuesong; Xu Xuefeng;

  • 作者单位

    Beijing Forestry Univ, Sch Technol, Beijing 100083, Peoples R China;

    Beijing Forestry Univ, Sch Technol, Beijing 100083, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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