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Laser-induced periodic surface structures (LIPSS) on polymer surfaces

机译:聚合物表面上的激光诱导的周期性表面结构(LIPSS)

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Frequently observed structures in laser-surface processing are ripples, also denoted as laser-induced periodic surface structures (LIPSS). Ripples originate from the interference of the incident/refracted laser light with the scattered or diffracted light near the surface. For many polymer surfaces, organized nano-ripple structures surfaces can be induced by irradiation with pulsed UV lasers with pulse lengths in the order of some nanoseconds at fluences well below the ablation threshold and with a large number of laser pulses N. After exposure to linearly polarized radiation at normal incidence, the lateral period of the observed LIPSS is close to the wavelength λ. This type of structures is usually called low spatial frequency LIPSS (LSFL). For femto-second laser light, ripples at polymer surfaces are also observed at a laser fluence above the ablation threshold, even with low numbers of laser pulses N. Under special conditions, another type of ripples with periods as small as λ/3 has been reported. This type of ripples is called high spatial frequency LIPSS (HSFL). We summarize here our work on LIPSS generation at polymers and describe potential applications in the field of self-organized formation of gold nano-wires and nano-structure induced alignment of biological cells cultivated on polymer substrates.
机译:在激光表面处理中经常观察到的结构是波纹,也称为激光诱导的周期性表面结构(LIPSS)。波纹起因于入射/折射激光对表面附近散射或衍射光的干扰。对于许多聚合物表面,可以通过以远低于消融阈值的注量和大量激光脉冲N的脉冲长度在几纳秒量级的脉冲UV激光辐照来诱导有组织的纳米波纹结构表面。垂直入射的偏振辐射,观察到的LIPSS的横向周期接近波长λ。这种类型的结构通常称为低空间频率LIPSS(LSFL)。对于飞秒激光,即使在激光脉冲数N较小的情况下,在高于烧蚀阈值的激光注量下,也会在聚合物表面观察到波纹。在特殊条件下,周期为λ/ 3的另一种波纹已经存在。报告。这种波纹称为高空间频率LIPSS(HSFL)。我们在这里总结我们在聚合物上产生LIPSS的工作,并描述在金纳米线的自组织形成和在聚合物基质上培养的生物细胞的纳米结构诱导的排列方面的潜在应用。

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