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Analysis and Evaluation of Boundary Conditions for Direct Surface Structuring by Multi-Beam Interference

机译:多光束干涉直接表面结构边界条件的分析与评估

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Multi-Beam-Interference (MBI) is a promising approach for a more cost-efficient functionaliza-tion of surfaces by nano structuring. It allows the simultaneous structuring of a whole surface area in one process step. This area is directly laser ablated with the modulated intensity created by the inter-ference of two or more coherent beams. In this study, we first analyze the different possibilities for MBI setups with regards to the number and the alignment of utilized beams used for direct surface structuring. The key factors for direct surface structuring are stability and contrast of the interference pattern. From these criteria 2-Beam interference is derived as optimal setup for the direct structuring of surfaces. In the second part of this work experiments with a ns- and a ps-laser are carried out and compared to the theory. For the ns-laser minimal structures sizes in the 100 nm regime on polyimide are feasible, for the ps-laser minimal periodicity of 400 nm on stainless steel. The measured interfer-ence contrast decreases significantly for shorter pulses.
机译:多光束干涉(MBI)是一种有前途的方法,可以通过纳米结构更经济高效地对表面进行功能化。它允许在一个处理步骤中同时构造整个表面积。用两个或多个相干光束的干涉产生的调制强度直接激光烧蚀该区域。在这项研究中,我们首先针对用于直接表面结构化的利用光束的数量和对齐方式,分析MBI设置的不同可能性。直接表面结构化的关键因素是干涉图案的稳定性和对比度。根据这些标准,可以得出2束干涉作为直接构造表面的最佳设置。在这项工作的第二部分中,使用ns激光和ps激光进行了实验,并将其与理论进行了比较。对于聚酰亚胺上的ns激光最小结构尺寸为100 nm,对于不锈钢上的ps激光最小周期性为400 nm可行。对于较短的脉冲,测得的干扰对比度会明显降低。

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