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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Coulomb explosion and early plasma generation during femtosecond laser ablation of silicon at high laser fluence
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Coulomb explosion and early plasma generation during femtosecond laser ablation of silicon at high laser fluence

机译:飞秒激光烧蚀高激光通量时的库仑爆炸和早期等离子体产生

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摘要

In this paper, a two-dimensional hydrodynamic model is presented to investigate the femtosecond laser ablation of silicon in air. Fast electron/ion ejection and the resultant early stage plasma dynamics are studied at laser fluence much higher than the ablation threshold (above 10 J cm~(-2)). It is revealed that the early plasma splits into two portions during its expansion, comprised of fast and slow particles, respectively. During the ablation process, ultra-fast ion ejection (before 0.2 ps) from the silicon surface appears to occur before thermal ejection starts. By investigating the ion expansion speed, electric field distribution, and velocity distribution of different ions, the occurrence of Coulomb explosion (CE) is demonstrated in the ablation of silicon at high laser fluence, due to the intense electron emission at the early stage. It leads to a fast ion ejection from the target surface, increasing the material removal rate at the early stage. In contrast, CE is absent in the ablation of copper, although a double-layer effect exists.
机译:本文提出了二维流体动力学模型来研究飞秒激光烧蚀空气中的硅。在远高于消融阈值(大于10 J cm〜(-2))的激光注量下,研究了快速电子/离子喷射以及由此产生的早期等离子体动力学。揭示了早期血浆在其膨胀过程中分为两部分,分别由快和慢颗粒组成。在烧蚀过程中,在开始热喷射之前,似乎发生了从硅表面超快的离子喷射(0.2 ps之前)。通过研究离子的膨胀速度,电场分布和不同离子的速度分布,可以证明由于早期电子的强烈发射,在高激光通量的烧蚀硅中发生了库仑爆炸(CE)。它导致从目标表面快速喷射离子,从而在早期提高了材料去除率。相反,尽管存在双层效应,但是在铜的烧蚀中不存在CE。

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