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Femtosecond laser absorption in fused silica: Numerical and experimental investigation

机译:飞秒激光在熔融石英中的吸收:数值和实验研究

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Single pulse transmissivity and reflectivity of fused silica irradiated by tightly focused 90 fs laser pulses at a center wavelength of 800 nm are numerically and experimentally investigated to study the role of nonlinear photoionization and avalanche ionization processes in free electron generation. The laser beam inside fused silica is modeled with a (2+1)-dimensional propagation equation which considers the effects of laser beam diffraction, group velocity dispersion, self-focusing, defocusing, and absorption due to the free electrons and nonlinear photoionization of the valence electrons. Comparison of our simulation to the experimental data reveals that the avalanche ionization coefficients are much smaller than some previously reported results and that avalanche ionization is of minor importance in generating free electrons in fused silica at the laser fluence levels considered in this study.
机译:数值和实验研究了紧密聚焦的90 fs激光脉冲在中心波长为800 nm照射下熔融石英的单脉冲透射率和反射率,以研究非线性光电离和雪崩电离过程在自由电子产生中的作用。使用(2 + 1)维传播方程对熔融石英内部的激光束进行建模,该方程考虑了激光束衍射,基团速度色散,自聚焦,散焦和吸收的影响,这是由于激光的自由电子和非线性光电离引起的。价电子。我们的模拟与实验数据的比较表明,雪崩电离系数比以前报道的结果小得多,并且雪崩电离对于在本研究中考虑的激光注量水平下在熔融石英中生成自由电子的重要性不大。

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