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飞秒脉冲激光诱导宽带抗反射微结构阵列损伤阈值的计算

Calculation of femtosecond pulse laser induced damage threshold for broadband antireflective microstructure arrays.

作者信息

Jing Xufeng, Shao Jianda, Zhang Junchao, Jin Yunxia, He Hongbo, Fan Zhengxiu

机构信息

Key Laboratory of Materials for High Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, PR China.

出版信息

Opt Express. 2009 Dec 21;17(26):24137-52. doi: 10.1364/OE.17.024137.

Abstract

In order to more exactly predict femtosecond pulse laser induced damage threshold, an accurate theoretical model taking into account photoionization, avalanche ionization and decay of electrons is proposed by comparing respectively several combined ionization models with the published experimental measurements. In addition, the transmittance property and the near-field distribution of the 'moth eye' broadband antireflective microstructure directly patterned into the substrate material as a function of the surface structure period and groove depth are performed by a rigorous Fourier model method. It is found that the near-field distribution is strongly dependent on the periodicity of surface structure for TE polarization, but for TM wave it is insensitive to the period. What's more, the femtosecond pulse laser damage threshold of the surface microstructure on the pulse duration taking into account the local maximum electric field enhancement was calculated using the proposed relatively accurate theoretical ionization model. For the longer incident wavelength of 1064 nm, the weak linear damage threshold on the pulse duration is shown, but there is a surprising oscillation peak of breakdown threshold as a function of the pulse duration for the shorter incident wavelength of 532 nm.

摘要

为了更准确地预测飞秒脉冲激光诱导损伤阈值,通过将几种复合电离模型分别与已发表的实验测量结果进行比较,提出了一种考虑光电离、雪崩电离和电子衰减的精确理论模型。此外,采用严格的傅里叶模型方法研究了直接图案化在衬底材料中的“蛾眼”宽带抗反射微结构的透过率特性和近场分布随表面结构周期和凹槽深度的变化。研究发现,对于TE偏振,近场分布强烈依赖于表面结构的周期性,但对于TM波,它对周期不敏感。此外,使用所提出的相对精确的理论电离模型,计算了考虑局部最大电场增强的表面微结构在脉冲持续时间上的飞秒脉冲激光损伤阈值。对于1064nm的较长入射波长,显示出脉冲持续时间上较弱的线性损伤阈值,但对于532nm的较短入射波长,击穿阈值随脉冲持续时间呈现出令人惊讶的振荡峰值。

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