Han Weina, Jiang Lan, Li Xiaowei, Wang Qingsong, Li Hao, Lu YongFeng
Opt Express. 2014 Jun 30;22(13):15820-8. doi: 10.1364/OE.22.015820.
We demonstrate that the polarization-dependent anisotropy of the laser-induced periodic surface structure (LIPSS) on silicon can be adjusted by designing a femtosecond laser pulse train (800 nm, 50 fs, 1 kHz). By varying the pulse delay from 100 to 1600 fs within a double pulse train to reduce the deposited pulse energy, which weakens the directional surface plasmon polarition (SPP)-laser energy coupling based on the initial formed ripple structure, the polarization-dependent geometrical morphology of the LIPSS evolves from a nearly isotropic circular shape to a somewhat elongated elliptical shape. Meanwhile, the controllable anisotropy of the two-dimensional scanned-line widths with different directions is achieved based on a certain pulse delay combined with the scanning speed. This can effectively realize better control over large-area uniform LIPSS formation. As an example, we further show that the large-area LIPSS can be formed with different scanning times under different pulse delays.
我们证明,通过设计飞秒激光脉冲序列(800纳米,50飞秒,1千赫兹),可以调节硅上激光诱导周期性表面结构(LIPSS)的偏振相关各向异性。通过在双脉冲序列中将脉冲延迟从100飞秒变化到1600飞秒,以减少沉积的脉冲能量,这基于初始形成的波纹结构削弱了定向表面等离激元极化(SPP)-激光能量耦合,LIPSS的偏振相关几何形态从近乎各向同性的圆形演变为有点拉长的椭圆形。同时,基于特定的脉冲延迟与扫描速度相结合,实现了不同方向二维扫描线宽度的可控各向异性。这可以有效地更好地控制大面积均匀LIPSS的形成。例如,我们进一步表明,在不同的脉冲延迟下,可以通过不同的扫描时间形成大面积LIPSS。