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Surface melting of copper by ultrashort laser pulses

机译:超短激光脉冲对铜的表面熔化

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摘要

The main advantage of ultrashort laser pulses in manufacturing technology is their very high removal rate of material and high quality of microstructures with the smallest dimensions at 1 μm level. The accuracy is mainly due to an almost absence of thermal diffusion into bulk material. In this paper we report the investigation on polycrystalline Cu sample surface treated by 6.7 ps laser pulses with 1030 nm laser light wavelength. Scanning electron microscopy micrographs reveal the presence of jet-like structures with spherical drop-like endings, solidified spheres and many bubble bursts at even lower fluence than the threshold value for the ablation is. Within the molten material the jet-like features are due to an explosion of bubbles originated in solid-liquid-vapor transitions. In the case of below-threshold irradiation, the same objects can be seen along surface scratches, dot contaminations etc., which indicate an increase of the laser light absorption on these inhomogeneities.
机译:超短激光脉冲在制造技术中的主要优势是它们的材料去除率非常高,并且在1μm的水平上具有最小尺寸的高质量微结构。精度主要是由于几乎没有热扩散到块状材料中。在本文中,我们报告了通过6.7 ps激光脉冲和1030 nm激光波长处理的多晶Cu样品表面的研究。扫描电子显微镜显微照片揭示了喷射状结构的存在,其球形滴状末端,凝固的球体和许多气泡破裂,其通量甚至低于消融阈值。在熔融材料中,喷射状特征是由于源自固-液-汽转变的气泡爆炸所致。在阈值以下照射的情况下,沿着表面划痕,点污染等可以看到相同的物体,这表明在这些不均匀性上激光吸收的增加。

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