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Rotationally symmetric colorization of metal surfaces through omnidirectional femtosecond laser-induced periodic surface structures

机译:通过全向飞秒激光诱导的周期性表面结构旋转对称的金属表面色彩

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摘要

Following femtosecond (fs) laser pulse irradiation, the formation of a new type of low-spatial-frequency laser-induced periodic surface structure (LSFL) patterns, namely, omnidirectional LSFLs (OD-LSFLs) with the periodic ordering of their orientations, are investigated on Ni in this Letter. Using a liquid crystal polymer patterned depolarizer, we periodically rotate the polarization of fs laser pulses across the laser spot and create OD-LSFLs by raster scanning fs laser pulses. We also show that the period of the OD-LSFL orientation rotation can be controlled with the defocused distance, and OD-LSFLs can significantly expand the viewing angle of the structural colors in the azimuthal direction without noticeable color degradations. (C) 2020 Optical Society of America
机译:在Femtosecond(FS)激光脉冲辐照后,形成新型的低空间频率激光诱导的周期性表面结构(LSFL)模式,即具有定期排序的全向LSFL(OD-LSFL)是 在这封信中调查了NI。 使用液晶聚合物图案化的DepOriarizer,我们通过光栅扫描FS激光脉冲定期旋转FS激光脉冲的偏振,并通过光栅扫描FS激光脉冲创建OD-LSFL。 我们还表明,OD-LSFL取向旋转的周期可以用离焦距离控制,并且OD-LSFL可以显着地扩展结构颜色在方位角方向上的视角而不明显的颜色降低。 (c)2020美国光学学会

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