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Optical breakdown of solids by few-cycle laser pulses

机译:短周期激光脉冲对固体的光学分解

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摘要

We show that a broadly accepted criterion of laser-induced breakdown in solids, defining the laser-breakdown threshold in terms of the laser fluence or laser intensity needed to generate a certain fraction of the critical electron density rc within the laser pulse, fails in the case of high-intensity few-cycle laser pulses. Such laser pulses can give rise to subcycle oscillations of electron density ρ with peak ρ values well above ρc even when the total energy of the laser pulse is too low to induce a laser damage of material. The central idea of our approach is that, instead of the ρ = ρc ratio, the laser-breakdown threshold connects to the total laser energy coupled to the electron subsystem and subsequently transferred to the crystal lattice. With this approach, as we show in this work, predictions of the physical model start to converge to the available experimental data.
机译:我们表明,在固体中由激光引起的击穿的广泛接受的标准在产生激光脉冲内产生一定比例的临界电子密度rc所需的激光通量或激光强度方面定义了激光击穿阈值,但该标准未能通过。高强度几周期激光脉冲的情况。即使当激光脉冲的总能量太低而不会引起材料的激光损坏时,这种激光脉冲也会引起峰值ρ值远高于ρc的电子密度ρ的子周期振荡。我们方法的中心思想是,激光击穿阈值代替ρ=ρc比率,而与耦合至电子子系统并随后转移至晶格的总激光能量有关。正如我们在这项工作中所展示的那样,使用这种方法,物理模型的预测开始收敛到可用的实验数据。

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