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Structural modifications in fused silica induced by ultraviolet fs laser filaments

机译:紫外fs激光灯丝引起的熔融石英的结构改性

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It is shown that the tight focusing of short ultraviolet laser pulses (248 nm, 450 fs) in the bulk of high bandgap transparent solids (fused silica) can result in structural modifications in the material. These can vary from small changes of the refractive index to birefringence, cracks and voids. This restructuring of the medium is due to the high laser intensities attained, and the plasma that is generated through multi-photon processes. The restructuring comes in the form of a string, which is the result of the nonlinear propagation of the laser beam in the medium as a self-trapped filament. We resume the conditions for the generation of the different types of modifications and comment on the temporal evolution and the role of the plasma strings at the trail of the light filaments.
机译:结果表明,短的紫外激光脉冲(248 nm,450 fs)在大量高能隙透明固体(熔融石英)中的紧密聚焦会导致材料的结构改变。这些可以从折射率的小变化到双折射,裂缝和空隙而变化。介质的这种重组归因于获得的高激光强度以及通过多光子过程生成的等离子体。重组以字符串形式出现,这是激光束作为自陷丝在介质中非线性传播的结果。我们恢复了产生不同类型修饰的条件,并评论了时间演变和等离子串在灯丝尾迹处的作用。

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