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Improving the homogeneity of diffraction based colours by fabricating periodic patterns with gradient spatial period using Direct Laser Interference Patterning

机译:通过使用直接激光干涉图样制作具有梯度空间周期的周期性图样来提高基于衍射色的均匀性

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摘要

This study focuses on the development of a strategy to produce periodic structures with a variable spatial period for increasing the homogeneity of structural colours by means of direct laser interference patterning. Using a four-beam interference configuration, hole-like periodic arrays are produced on stainless steel with a 70 ps pulsed laser source operating at 532 nm laser wavelength. The laser processing parameters are optimised for obtaining patterns with the highest possible diffraction efficiency and thus showing the highest possible colour intensity. A model for calculating the required spatial period to obtain a defined colour under specific conditions of illumination and observation angles is presented. A very good agreement between the captured structural colour spectrum and the real visible spectrum of light was obtained. In addition, a strategy for mixing holographic colours, in particular for obtaining the white colour is developed. Finally, the developed model is successfully integrated into machine software, in order to automatically process images that exhibit required colours at certain viewing conditions. The produced patterns are characterised using confocal microscopy and the efficiency of the first diffraction order was measured by optical spectroscopy.
机译:这项研究的重点是开发一种策略,以产生具有可变空间周期的周期性结构,以通过直接激光干涉图案化来增加结构颜色的均匀性。使用四光束干涉配置,在具有532 nm激光波长的70 ps脉冲激光源的不锈钢上产生孔状周期阵列。优化激光加工参数以获得具有最高可能衍射效率的图案,从而显示最高可能的色彩强度。提出了一种用于计算在特定的照明角度和观察角度条件下获得定义的颜色所需的空间周期的模型。在捕获的结构色谱和光的实际可见光谱之间获得了很好的一致性。此外,提出了一种用于混合全息色彩,特别是用于获得白色的策略。最后,将开发的模型成功集成到机器软件中,以便自动处理在某些观看条件下呈现出所需颜色的图像。使用共聚焦显微镜对产生的图案进行表征,并通过光学光谱法测量第一衍射级的效率。

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