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Investigation of the dynamic process of high fluence femtosecond laser ablation of aluminum by ultrafast time-resolved shadowgraphy

机译:超快速时间分辨阴影技术研究高能效飞秒飞秒激光烧蚀铝的动力学过程

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The dynamic process of 800 nm high fluence femtosecond laser ablation of aluminum is revealed by ultrafast time-resolved shadowgraphs. Both single and multiple laser pulses at perpendicular or oblique incidence are employed in the experiment. It is demonstrated that femtosecond laser ablation of aluminum with a fluence of 40 J/cm~2 is a complex process involving both photothermal and photomechanical mechanisms. For a single ablation pulse, the propagation direction of the ejected material remains normal to the target surface regardless of the incidence angle of the laser. For the multiple pulses ablation with an oblique incidence angle, the propagation direction of the ejected material deviates from the normal of the target surface gradually as the number of ablation pulses increases due to the topographic change of the ablated region.
机译:超快时间分辨阴影图揭示了800 nm高能效飞秒飞秒激光烧蚀铝的动态过程。实验中采用了垂直或倾斜入射的单个和多个激光脉冲。飞秒激光烧蚀铝的能量密度为40 J / cm〜2是一个复杂的过程,涉及光热机制和光机械机制。对于单个消融脉冲,无论激光的入射角如何,喷射材料的传播方向都保持垂直于目标表面。对于具有倾斜入射角的多个脉冲消融,由于消融区域的形貌变化,随着消融脉冲数量的增加,喷射材料的传播方向逐渐偏离目标表面的法线。

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