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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >High-fluence femtosecond laser ablation of silica glass: Effects of laser-induced pressure
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High-fluence femtosecond laser ablation of silica glass: Effects of laser-induced pressure

机译:高通量飞秒激光烧蚀石英玻璃:激光诱导压力的影响

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摘要

A pump-probe technique is employed to investigate the dynamic process of femtosecond laser ablation of silica glass, and three stress waves are observed inside the silica glass in the time-resolved shadowgraphs at a fluence of 40 J cm-2. It is believed that the first stress wave is a thermoelastic wave generated by thermal expansion, while the second and the third are generated subsequently by the mechanical expansions as a result of the extremely high pressure induced by the laser. By employing digital holography, the ablation crater is investigated to identify the ablation results, and high-density silica glass is found beneath the ablation crater, which is also the result of the laser-induced pressure. Furthermore, it is found that more stress waves will be generated at a higher fluence, and the thresholds for the generation of the first, second and third stress wave are measured to be about 2 J cm-2, 6 J cm-2 and 31 J cm-2, respectively. The theoretical calculation result shows that the laser-induced pressure increases with the increase in fluence and can be on the scale of TPa, and we believe a higher pressure will induce more mechanical expansions and therefore more stress waves.
机译:飞轮探针技术被用来研究飞秒激光烧蚀石英玻璃的动态过程,在时间分辨阴影图中,在40 J cm-2的注量下,在石英玻璃内部观察到三个应力波。可以相信,第一应力波是由热膨胀产生的热弹性波,而第二和第三应力波是由于激光引起的极高压力而随后由机械膨胀产生的。通过使用数字全息术,对消融坑进行了研究以鉴定消融结果,并且在消融坑下方发现了高密度石英玻璃,这也是激光诱导压力的结果。此外,发现以更高的通量将产生更多的应力波,并且第一,第二和第三应力波的产生阈值经测量为约2 J cm-2、6 J cm-2和31 J cm-2分别。理论计算结果表明,激光诱导的压力随注量的增加而增加,并且可以在TPa的范围内,我们认为较高的压力将引起更多的机械膨胀,从而产生更多的应力波。

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