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Nanosecond laser-induced nanostructuring of thin metal layers and dielectric surfaces

机译:纳秒激光诱导的薄金属层和介电表面的纳米结构

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Nanostructuring of dielectric surfaces has a widespread field of applications. In this work the recently introduced laser method validates this novel concept for complex nanostructuring of dielectric surfaces. This concept combines the mechanism of self-assembly of metal films due to laser irradiation with the concept of laser-assisted transfer of these patterns into the underlying material. The present work focuses on pattern formation in fused silica near the border of the laser spot, where distorted nested ring-like patterns were found in contrast to concentric ring patterns at homogeneous laser irradiation. For the experiments a lateral homogeneous spot of a KrF excimer laser (λ = 248 nm) and a Gaussian beam Yb fiber laser (λ = 1064 nm) was used for irradiation of a thin chromium layer onto fused silica resulting in the formation of different ring structures into the fused silica surface. The obtained structures were analysed by AFM and SEM. It is found that the mechanism comprises laser-induced metal film melting, contraction of the molten metal, and successive transfer of the metal hole geometry to the fused silica. Simulations taking into account the heat and the Navier-Stokes equations were compared with the experimental results. A good agreement of simulation results with experimental data was found. These first results demonstrate that the variation of the laser beam profile allows the local control of the melt dynamics which causes changes of the shape and the size of the ring patterns. Hence, a light-controlled self-assembly is feasible.
机译:介电表面的纳米结构具有广泛的应用领域。在这项工作中,最近引入的激光方法验证了介电表面复杂纳米结构的这种新颖概念。该概念将金属膜自组装的机制相结合,由于激光照射,激光辅助将这些图案的激光辅助转移到底层材料中的概念。本作本作侧重于激光斑点边界附近熔融二氧化硅的图案形成,其中与均匀激光照射的同心环图案形成扭曲的嵌套环状图案。对于实验,使用KRF准分子激光器(λ= 248nm)和高斯梁Yb光纤激光器(λ= 1064nm)的横向均匀点用于熔接铬层在熔融二氧化硅上照射,导致不同环的形成结构进入熔融二氧化硅表面。通过AFM和SEM分析所获得的结构。发现该机构包括激光诱导的金属薄膜熔化,熔融金属的收缩,以及金属孔几何形状的连续转移到熔融二氧化硅。考虑到热量和Navier-Stokes方程的模拟与实验结果进行了比较。发现了使用实验数据的模拟结果吻合良好。这些第一结果表明激光束轮廓的变化允许熔体动力学的局部控制,这导致形状的变化和环形图案的尺寸。因此,光控自组装是可行的。

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