Han Weina, Jiang Lan, Li Xiaowei, Liu Pengjun, Xu Le, Lu YongFeng
Laser Micro/Nano-Fabrication Laboratory, School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, China.
Opt Express. 2013 Jul 1;21(13):15505-13. doi: 10.1364/OE.21.015505.
Large-area, uniform laser-induced periodic surface structures (LIPSS) are of wide potential industry applications. The continuity and processing precision of LIPSS are mainly determined by the scanning intervals of adjacent scanning lines. Therefore, continuous modulations of LIPSS and scanned line-widths within one laser scanning pass are of great significance. This study proposes that by varying the laser (800 nm, 50 fs, 1 kHz) polarization direction, LIPSS and the scanned line-widths on a silicon (111) surface can be continuously modulated with high precision. It shows that the scanned line-width reaches the maximum when the polarization direction is perpendicular to the scanning direction. As an application example, the experiments show large-area, uniform LIPSS can be fabricated by controlling the scanning intervals based on the one-pass scanned line-widths. The simulation shows that the initially formed LIPSS structures induce directional surface plasmon polaritons (SPP) scattering along the laser polarization direction, which strengthens the subsequently anisotropic LIPSS fabrication. The simulation results are in good agreement with the experiments, which both support the conclusions of continuous modulations of the LIPSS and scanned line-widths.
大面积、均匀的激光诱导周期性表面结构(LIPSS)具有广泛的潜在工业应用。LIPSS的连续性和加工精度主要由相邻扫描线的扫描间隔决定。因此,在一次激光扫描过程中对LIPSS和扫描线宽进行连续调制具有重要意义。本研究提出,通过改变激光(800nm,50fs,1kHz)的偏振方向,可以在硅(111)表面上高精度地连续调制LIPSS和扫描线宽。结果表明,当偏振方向垂直于扫描方向时,扫描线宽达到最大值。作为一个应用实例,实验表明,基于单次扫描线宽控制扫描间隔,可以制备大面积、均匀的LIPSS。模拟结果表明,最初形成的LIPSS结构会沿激光偏振方向诱导定向表面等离激元极化激元(SPP)散射,从而增强随后的各向异性LIPSS制备。模拟结果与实验结果吻合良好,均支持LIPSS和扫描线宽连续调制的结论。