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Evolution of energy deposition during glass cutting with pulsed femtosecond laser radiation

机译:飞秒激光脉冲玻璃切割过程中能量沉积的演变

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摘要

We report on investigations of the energy deposition in the volume of thin glass during an ablation cutting process with pulsed femtosecond laser radiation by time-resolved pump-probe shadowgraphy. For a single laser pulse, the temporal evolution of the transient electronic excitation of the glass volume is imaged up to 10 ps after initial excitation. For an increasing number of laser pulses, the spatial excitation of the glass volume significantly changes compared to single pulse irradiation. Sharp spikes are observed, which reduce the transmission of the illuminating probe pulse. This indicates local maxima of the absorption and, therefore, energy deposition of the pump pulse energy in the glass volume. Furthermore, for an increasing number of pulses, different shapes of the surface ablation crater are observed. To study the correlation between the shape of the surface ablation crater and the energy deposition in the glass volume, simulations of the spatial intensity distribution of the pump pulse are executed by means of linear beam propagation method. We show that the transient excitation spikes observed by pump-probe shadowgraphy can be explained by refraction and diffraction of the laser radiation at the surface ablation crater. Our results provide an experimental validation for the physical reason of an ablation stop for an ablation cutting process. Moreover, the simulations allow for the prediction of damage inside the glass volume.
机译:我们报告了通过时间分辨的泵浦探针阴影成像技术对脉冲飞秒激光辐射进行的消融切割过程中薄玻璃体积中能量沉积的研究。对于单个激光脉冲,玻璃体积的瞬态电子激发的时间演变在初始激发后的10 ps内成像。对于越来越多的激光脉冲,与单脉冲辐射相比,玻璃体积的空间激发显着变化。观察到尖峰,这会降低照明探针脉冲的传输。这表明吸收的局部最大值,因此表明玻璃体积中泵浦脉冲能量的能量沉积。此外,随着脉冲数量的增加,观察到了不同形状的表面消融坑。为了研究表面烧蚀坑的形状与玻璃体积中能量沉积之间的相关性,通过线性束传播方法对泵浦脉冲的空间强度分布进行了仿真。我们表明,由泵浦探针阴影照相术观察到的瞬态激发尖峰可以通过在表面烧蚀坑处的激光辐射的折射和衍射来解释。我们的结果提供了针对消融切割过程中消融停止的物理原因的实验验证。此外,模拟可以预测玻璃体积内部的损坏。

著录项

  • 来源
    《Applied Physics》 |2017年第5期|376.1-376.7|共7页
  • 作者单位

    Chair for Laser Technology LLT, RWTH Aachen University, Steinbachstraße 15, 52074 Aachen, Germany;

    TRUMPF Laser- und Systemtechnik GmbH, Johann-Maus-Straße 2, 71254 Ditzingen, Germany;

    Fraunhofer Institute for Laser Technology ILT, SteinbachstraBe 15, 52074 Aachen, Germany;

  • 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
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