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On the Formation Mechanism of Interference Rings in the Ablation Area on the Condensed Medium Surface under Irradiation with Femtosecond Laser Pulses

机译:在辐射激光脉冲照射下冷凝介质表面干涉环的形成机制

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摘要

The dynamics of Newton interference rings appearing in the ablation area on the surface of various condensed media under irradiation with femtosecond laser pulses is analyzed (according to published data on fs ablation). The data on the refractive index evolution in the expanding material cloud from the metal, semiconductor, and dielectric surface, obtained by interference pattern processing. The mechanism of the concentration of the energy absorbed by a medium from the laser beam in the thin layer under the irradiated sample surface is considered. The appearance of the inner layer with increased energy release explains why the ablation process from the metal, semiconductor, and dielectric surface, despite the differences in their compositions and radiation absorption mechanisms, occurs similarly, i.e., with the formation of a thin shell at the outer ablation cloud boundary, which consists of a condensed medium reflecting radiation and, together with the target surface, forms a structure necessary for interference formation.
机译:分析了在与飞秒激光脉冲照射的各种浓缩介质表面上出现的牛顿干涉环的动态(根据FS消融的发布数据)。通过干涉图案处理获得的金属,半导体和介电表面的膨胀材料云中的折射率演变的数据。考虑了由薄层在照射样品表面下的激光束吸收的能量浓度的机理。具有增加的能量释放的内层的外观解释了为什么尽管它们的组合物和辐射吸收机构的差异相似,即,在形成薄壳的情况下,尽管它们的组合物和辐射吸收机构差异外消融云边界,由反射辐射的冷凝介质组成,与目标表面一起形成干涉形成所需的结构。

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