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Double- and Multi-Femtosecond Pulses Produced by Birefringent Crystals for the Generation of 2D Laser-Induced Structures on a Stainless Steel Surface

机译:双折射晶体产生的双飞秒和飞秒脉冲用于在不锈钢表面上生成二维激光诱导结构

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摘要

Laser-induced textures have been proven to be excellent solutions for modifying wetting, friction, biocompatibility, and optical properties of solids. The possibility to generate 2D-submicron morphologies by laser processing has been demonstrated recently. Employing double-pulse irradiation, it is possible to control the induced structures and to fabricate novel and more complex 2D-textures. Nevertheless, double-pulse irradiation often implies the use of sophisticated setups for modifying the pulse polarization and temporal profile. Here, we show the generation of homogeneous 2D-LIPSS (laser-induced periodic surface structures) over large areas utilizing a simple array of birefringent crystals. Linearly and circularly polarized pulses were applied, and the optimum process window was defined for both. The results are compared to previous studies, which include a delay line, and the reproducibility between the two techniques is validated. As a result of a systematic study of the process parameters, the obtained morphology was found to depend both on the interplay between fluence and inter-pulse delay, as well as on the number of incident pulses. The obtained structures were characterized via SEM (scanning electron microscopy) and atomic force microscopy. We believe that our results represent a novel approach to surface structuring, primed for introduction in an industrial environment.
机译:激光诱导的纹理已被证明是改善固体的润湿性,摩擦性,生物相容性和光学性能的出色解决方案。最近已经证明了通过激光加工产生2D亚微米形态的可能性。利用双脉冲辐照,可以控制诱导的结构并制造新颖且更复杂的2D纹理。尽管如此,双脉冲辐照通常意味着要使用复杂的设置来修改脉冲极化和时间分布。在这里,我们展示了利用双折射晶体的简单阵列在大面积上生成均匀的2D-LIPSS(激光诱导的周期性表面结构)的过程。施加线性和圆极化脉冲,并为两者定义了最佳工艺窗口。将结果与以前的研究(包括延迟线)进行比较,并验证了这两种技术之间的可重复性。通过对工艺参数进行系统研究的结果,发现获得的形态既取决于注量和脉冲间延迟之间的相互作用,又取决于入射脉冲的数量。所得结构通过SEM(扫描电子显微镜)和原子力显微镜表征。我们相信我们的结果代表了一种新颖的表面结构化方法,已准备好在工业环境中引入。

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