首页> 外文会议>International Symposium on Laser Precision Microfabrication >Ultrafast laser ablation of dielectrics employing temporally shaped femtosecond pulses
【24h】

Ultrafast laser ablation of dielectrics employing temporally shaped femtosecond pulses

机译:超快激光烧蚀电介质采用时间形状的飞秒脉冲

获取原文

摘要

Dielectric materials exposed to ultrashort laser radiation have evidenced individualized paths to deposit the energy into the lattice. Electronic and thermal mechanisms competing in the process of material removal depend on the efficiency of the electrostatic energy accumulation on the surface due to photoionization, as well as on the lattice heating which follows the electron-phonon coupling. The electrostatic surface break-up is a fast, sub-picosecond process, while thermal mechanisms start to dominate on a longer, picosecond time scale given by the electron-lattice equilibration and phase transformation time. The Coulomb-explosion induced ion ejection due to a surplus charge accumulated on the surface during the photoionization process is significant only in dielectrics while in semiconductors and metals an efficient neutralization occurs. The significance of the different channels in dielectric materials can be reduced or enhanced by using laser pulses which are modulated on a time scale characteristic for the above mentioned mechanisms. Thus, amplified temporally-shaped pulses, double peaks, or pulse trains with a separation below 1 p5 can have a significant effect on the quality of micromachining of transparent materials. The energy deposition can be modulated in such a way that the first pulse of properly chosen energy leads to a softening of the material associated with the onset of heating, thus changing the coupling conditions for the next pulses. This leads to less residual stress accumulation, cleaner structures, and opens the way for a material dependent optimization process.
机译:暴露于超短激光辐射的介电材料已经证明了个性化的路径将能量沉积到晶格中。在材料去除过程中竞争的电子和热机制取决于光相消除引起的表面上静电能量积聚的效率,以及沿着电子 - 声子耦合的晶格加热。静电表面分解是快速,子皮秒的过程,而热机制开始占据由电子 - 晶格平衡和相变时间给出的更长的Pic秒的时间刻度。由于在光相化过程中积聚在表面上积聚的剩余电荷引起的库仑爆炸引起的离子喷射在半导体和金属中仅以电介质在介电中发生了有效的中和。通过使用对上述机构的时间尺度特性调制的激光脉冲,可以减少或增强不同通道的不同通道的重要性。因此,扩增的时间形脉冲,双峰或分离在1p5以下的脉冲序列可以对透明材料的微机械线的质量具有显着影响。 The energy deposition can be modulated in such a way that the first pulse of properly chosen energy leads to a softening of the material associated with the onset of heating, thus changing the coupling conditions for the next pulses.这导致较少的残余应力累积,清洁器结构,并为材料依赖性优化过程打开。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号