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Formation Mechanism of Nanostructures on the Stainless Steel Surface by Femtosecond Laser Pulses

机译:飞秒激光脉冲在不锈钢表面形成纳米结构的机理

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In this paper, we report on the formation of a variety of microano-metric structures on the stainless steel surfaces by single-beam direct femtosecond laser writing. Periodic microgratings of different line widths and period are fabricated on the sample surfaces. Random nanostructures are observed inside the microgratings, when laser pulses with low laser energies are applied on the samples. Unlike random nanostructures, periodic nanostructures are produced inside the mi-crogratings, when laser pulses with high average pulse energy are applied. Besides, self-organized nanogratings, with variable periods, are formed all over the micro-machined area on the stainless steel surfaces due to the overlap of the microgratings, where the orientation of the nanogratings is parallel to the incident light polarization. Finally, we illustrate the formation mechanism of various kinds of nanostructures, produced on the stainless steel surfaces during our experiment.
机译:在本文中,我们报告了通过单光束直接飞秒激光写入在不锈钢表面上形成的各种微米/纳米结构。在样品表面上制作了不同线宽和周期的周期性微光栅。当在样品上施加低激光能量的激光脉冲时,在微光栅内部观察到随机的纳米结构。与随机纳米结构不同,当施加具有高平均脉冲能量的激光脉冲时,在微cro内部会产生周期性的纳米结构。此外,由于微光栅的重叠,在不锈钢表面的整个微加工区域上形成了具有可变周期的自组织纳米光栅,其中纳米光栅的取向平行于入射光的偏振。最后,我们说明了在实验过程中在不锈钢表面产生的各种纳米结构的形成机理。

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