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Modelling of optical breakdown in dielectrics including thermal effects relevant for nanosecond pulses and sequences of ultra-short laser pulses

机译:电介质中的光学故障建模,包括对纳秒脉冲和超短激光脉冲序列相关的热效应

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The authors complemented the rate equation for the free-electron density rho by a term describing thermal ionization. Heating through collision losses and recombination of the free electrons produced by nonlinear absorption, and its counteraction by heat diffusion out of the focal volume are considered. For sufficiently high temperatures, the electron energy distribution reaches across the band gap into the conduction band, and we treat electrons with E Egap as thermally ionized. The model performance on the example of breakdown in water is shown by an 8.8-ns, 532 nm pulse, with rhocr = 0.5 x 1021 cm-3, and tauc = 1.5 fs. Consideration of thermal ionization and calculation of the breakdown-induced temperature evolution creates a link between the energy deposition by nonlinear absorption and the resulting hydrodynamic phenomena that will greatly improve the understanding of plasma-mediated ablation.
机译:作者通过描述热电离的术语补充了游离电子密度Rho的速率方程。考虑通过非线性吸收产生的自由电子的碰撞损耗和重组,并考虑通过焦距的热扩散的反应。对于足够高的温度,电子能量分布在带间隙上达到导通带,并且我们用E> e 间隙作为热电离的电子。在水中击穿的示例上的模型性能由8.8-ns,532nm脉冲显示,RHO Cr = 0.5×10 21 cm -3 ,和tau c = 1.5 fs。考虑热电电离和击穿诱导的温度越变的计算产生了非线性吸收能量沉积与所得的流体动力学现象之间的联系,这将大大改善对血浆介导的消融的理解。

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