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Characterization of femtosecond laser filamentation in soda-lime glass

机译:苏打石灰玻璃中飞秒激光灯丝的表征

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This paper demonstrates the characterization of femtosecond laser filamentation in soda-lime glass. We achieved femtosecond pulse filamentation of variable height and width by focusing the femtosecond laser beam in different layers inside the sample glass. The dielectric medium immediately before the target position increases the effective numerical aperture of the objective lens that causes the elongation of focal length of the laser beam in a tiny focal spot with high power density. As a result, high aspect ratio voids are engraved inside the glass samples. Furthermore, we investigate the characteristics of the fabricated voids and their dependence on the irradiation conditions of the laser beam and associated optical setup. The height and width of the voids are controlled by varying the laser power, numerical aperture & magnification of the objective lens, and width of the dielectric medium before laser focusing position. Using high power femtosecond laser pulse filaments, we fabricated very long voids inside the glass sample, which undergoes cleaving process with uniform mechanical pressure for smooth cutting of the glass substrate.
机译:本文演示了钠钙玻璃中飞秒激光灯丝的表征。通过将飞秒激光束聚焦在样品玻璃内部的不同层中,我们实现了高度和宽度可变的飞秒脉冲细丝化。紧接在目标位置之前的电介质会增加物镜的有效数值孔径,从而导致在高功率密度的微小焦点中延长激光束的焦距。结果,高纵横比的空隙被刻在玻璃样品的内部。此外,我们研究了制造的空隙的特性及其对激光束照射条件和相关光学设置的依赖性。通过改变激光功率,物镜的数值孔径和放大率以及激光聚焦位置之前的介电介质的宽度来控制空隙的高度和宽度。使用高功率飞秒激光脉冲灯丝,我们在玻璃样品内部制造了很长的空隙,该空隙经历了均一的机械压力下的分裂过程,以平滑切割玻璃基板。

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