Opt Lett. 2014 Feb 1;39(3):606-9. doi: 10.1364/OL.39.000606.
Large-area close-packed microlens arrays (MLAs) are highly desirable for structured light and integrated optical applications. However, efficient realization of ultralarge area MLAs with a high fill factor is still technically challenging, especially on glass material. In this Letter we propose a high-efficiency MLA fabrication method using single-pulsed femtosecond laser wet etch and close-packed quasi-periodic concave MLAs consisting of three million units fabricated on silica glass within an hour. The fabricated MLAs are demonstrated to have extreme optical smoothness (∼8.5 nm) by an atomic force microscope. It has also been demonstrated that the profile of the quasi-periodic concave structures could be easily tuned by changing the laser scanning speed or the pulse energy. Additionally, the optical performances of the MLA diffusers were investigated by using sharp focusing, high-resolution imaging, and flat-top illumination.
大面积密排微透镜阵列(MLA)在结构光和集成光学应用中非常理想。然而,高效率地实现具有高填充因子的超大面积 MLA 仍然具有技术挑战性,尤其是在玻璃材料上。在这封信件中,我们提出了一种使用单脉冲飞秒激光湿法刻蚀和密排准周期凹面 MLA 的高效率 MLA 制造方法,在一个小时内就在二氧化硅玻璃上制造了三百万个单元。通过原子力显微镜证明,所制造的 MLA 具有极高的光学平滑度(约 8.5nm)。此外,还通过改变激光扫描速度或脉冲能量来证明准周期凹面结构的轮廓可以很容易地进行调整。此外,通过使用锐聚焦、高分辨率成像和平顶照明来研究 MLA 扩散器的光学性能。