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Theoretical treatments of ultrashort pulse laser processing of transparent materials: toward understanding the volume nanograting formation and 'quill' writing effect

机译:透明材料超短脉冲激光加工的理论处理:旨在了解体积纳米光栅的形成和“笔芯”书写效果

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摘要

The dynamics of ultrashort-laser-induced generation of free electron plasma inside bulk glass is analyzed. The results of modeling are presented for typical glass modification regimes, obtained on the basis of Maxwell's equations supplemented with the equations describing electron plasma formation and the laser-induced electric current. The model has been demonstrated to allow revealing important features of laser beam propagation in the regimes of dense electron plasma generation such as strong scattering up to complete displacing of light from the plasma region followed by beam refocusing. The geometry of the laser energy absorption zone is determined, and the glass temperature is mapped which may be foreseen at the end of electron-glass matrix relaxation. This, in turn, allows estimating the laser-induced stress levels and making conclusions on the routes of glass modification. Finally, based on the modeling results, the plausible mechanisms are discussed which may be responsible for the formation of volume nanogratings in a number of transparent solids under the action ultrashort laser pulses and laser direct writing anisotropy observed for laser pulses with a tilted front.
机译:分析了超短激光诱导的块状玻璃内部自由电子等离子体生成的动力学。给出了典型玻璃改性方案的建模结果,该模型是在麦克斯韦方程组补充描述电子等离子体形成和激光感应电流的方程的基础上获得的。该模型已被证明可以揭示在致密电子等离子体产生过程中激光束传播的重要特征,例如强散射直至从等离子体区域完全移出光,然后重新聚焦。确定了激光能量吸收区的几何形状,并绘制了可在电子玻璃基质弛豫结束时预见的玻璃温度。反过来,这可以估计激光诱导的应力水平,并就玻璃改性的途径做出结论。最后,基于建模结果,讨论了可能的机制,这些机制可能是在超短激光脉冲作用下观察到的许多透明固体中体积纳米光栅的形成以及前端倾斜的激光脉冲观察到的激光直写各向异性的原因。

著录项

  • 来源
    《Applied physics》 |2013年第3期|437-449|共13页
  • 作者单位

    Optoelectronics Research Center, University of Southampton, SO 17 1BJ Southampton, UK Institute of Thermophysics SB RAS, 1 Lavrentyev Ave., 630090 Novosibirsk, Russia;

    Institute of Computational Technologies SB RAS, 6 Lavrentyev Ave., 630090 Novosibirsk, Russia Novosibirsk State Technical University, 20 Karl Marx Ave., 630073 Novosibirsk, Russia;

    Design and Technology Branch of Lavrentyev Institute of Hydrodynamics SB RAS, Tereshkovoi Street 29, 630090 Novosibirsk, Russia;

  • 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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  • 入库时间 2022-08-18 03:09:54

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