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Instability-triggered transformations in thin chromium film on glass under laser irradiation

机译:激光辐照下玻璃上铬薄膜的不稳定性触发转变

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Metal films on transparent substrates are widely applied for mask production in lithography, and lasers are frequently used for their patterning. Quality of the patterning is limited by fundamental phenomena taking place close to edges of the laser ablated area. We experimentally and numerically investigated transformations in metal films during their irradiation with the nanosecond laser beam with fluences above the ablation threshold. Ridges of the resolidified metal with not uniform thickness were always formed on edges of the cleaned area. Instabilities during the ablation process forced the molten metal in the ridges to break up into droplets with the periodicity predicted by the Plateau-Rayleigh instability. The droplets on ridges were starting points for formation of ripples of metal film by irradiation with partially overlapping laser pulses. The initial droplets and later the self-organized parallel lines of chromium metal were heat sinks that cooled down the metal in their close proximity. Temperature modulation along the laser irradiation spot was high enough to initiate the Marangoni effect which resulted in movement of the molten metal from hot to colder areas.
机译:透明基板上的金属膜已广泛应用于光刻中的掩模生产,并且激光经常用于其图案化。图案的质量受到发生在靠近激光烧蚀区域的边缘的基本现象的限制。我们通过实验和数值研究了在纳秒级激光束辐照下,金属膜在其辐照度高于烧蚀阈值的过程中的转变。厚度不均匀的固化金属脊总是形成在清洁区域的边缘。烧蚀过程中的不稳定性迫使凸脊中的熔融金属分裂成液滴,其周期性由高原-瑞利不稳定性预测。脊上的液滴是通过部分重叠的激光脉冲照射而形成金属膜波纹的起点。最初的液滴和后来的自组织的铬金属平行线是散热器,这些散热器在其附近使金属冷却。沿激光辐照点的温度调制足够高,足以引发马兰戈尼效应,该效应导致熔融金属从高温区域转移到低温区域。

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