Dusser B, Sagan Z, Soder H, Faure N, Colombier J P, Jourlin M, Audouard E
Université de Lyon, F-69003, Lyon, France, Université de Saint-Etienne, Laboratoire Hubert Curien, UMR 5516CNRS, 42000 Saint Etienne, France.
Opt Express. 2010 Feb 1;18(3):2913-24. doi: 10.1364/OE.18.002913.
Precise nanostructuration of surface and the subsequent upgrades in material properties is a strong outcome of ultra fast laser irradiations. Material characteristics can be designed on mesoscopic scales, carrying new optical properties. We demonstrate in this work, the possibility of achieving material modifications using ultra short pulses, via polarization dependent structures generation, that can generate specific color patterns. These oriented nanostructures created on the metal surface, called ripples, are typically smaller than the laser wavelength and in the range of visible spectrum. In this way, a complex colorization process of the material, involving imprinting, calibration and reading, has been performed to associate a priori defined colors. This new method based on the control of the laser-driven nanostructure orientation allows cumulating high quantity of information in a minimal surface, proposing new applications for laser marking and new types of identifying codes.
表面的精确纳米结构化以及随后材料性能的提升是超快激光辐照的显著成果。材料特性可以在介观尺度上进行设计,从而具备新的光学特性。在这项工作中,我们证明了利用超短脉冲通过生成与偏振相关的结构来实现材料改性的可能性,这些结构能够产生特定的颜色图案。在金属表面形成的这些定向纳米结构,称为波纹,通常小于激光波长且处于可见光谱范围内。通过这种方式,已经进行了一个涉及印记、校准和读取的材料复杂着色过程,以关联预先定义的颜色。这种基于控制激光驱动纳米结构取向的新方法能够在最小的表面上累积大量信息,为激光打标和新型识别码提出了新的应用。