Gao Si, Li Ze-Zheng, Hu Zhi-Yong, Yu Feng, Chen Qi-Dai, Tian Zhen-Nan, Sun Hong-Bo
Opt Lett. 2020 May 1;45(9):2684-2687. doi: 10.1364/OL.391598.
We propose a precise diamond micromachining method based on ultraviolet femtosecond laser direct writing and a mixed acid heating chemical treatment. The chemical composition of the attached clusters generated during laser ablation and their effects on morphologies were investigated in experiments. The averaged roughness of pristine and processed regions reduced to 0.64 nm and 9.4 nm from 20.5 nm and 37.4 nm, respectively. With this method, spiral zone plates (SZPs) were inscribed on a high-pressure high-temperature diamond surface as micro-optical vortex generators. The optical performances of the diamond SZPs were characterized in both experiments and simulations, which were very consistent with each other. This chemical auxiliary processing method will contribute greatly to the wide application of integration and miniaturization of diamond surface optical components.
我们提出了一种基于紫外飞秒激光直写和混合酸加热化学处理的精确金刚石微加工方法。实验研究了激光烧蚀过程中产生的附着团簇的化学成分及其对形貌的影响。原始区域和加工区域的平均粗糙度分别从20.5 nm和37.4 nm降至0.64 nm和9.4 nm。利用该方法,在高温高压金刚石表面刻写了螺旋波带片(SZP)作为微光学涡旋发生器。通过实验和模拟对金刚石SZP的光学性能进行了表征,两者结果非常一致。这种化学辅助加工方法将极大地促进金刚石表面光学元件集成化和小型化的广泛应用。