Jia Jia, Zhou Changhe, Sun Xiaohui, Liu Liren
Shanghai Institute of Optics and Fine Mechanics, Academia Sinica, P.O. Box 800-211, Shangai 201800, China.
Appl Opt. 2004 Apr 1;43(10):2112-7. doi: 10.1364/ao.43.002112.
The superresolution technique is well known for its ability to compress the central diffractive spot that is smaller than the Airy diffractive spot. In this paper, we extend the superresolution technique for different laser beam shaping. A complete set of superresolution diffractive elements is developed for the flat-top beam shaping, the single-circle beam shaping, and the novel circular Dammann grating. Five phase plates, corresponding to each of its applications, have been made by use of micro-optics technology. Experiments that are presented are in good agreement with the theoretical results. The superresolution technique presented in this paper should be highly interesting for the wide applications of laser beam shaping.
超分辨率技术以其压缩小于艾里衍射光斑的中心衍射光斑的能力而闻名。在本文中,我们将超分辨率技术扩展到不同的激光束整形。针对平顶光束整形、单圆光束整形和新型圆形达曼光栅,开发了一套完整的超分辨率衍射元件。利用微光学技术制作了与其每种应用相对应的五个相位板。所呈现的实验结果与理论结果吻合良好。本文提出的超分辨率技术对于激光束整形的广泛应用应该具有很高的吸引力。