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幂函数分布的振幅型光瞳滤波器
引用本文:张巧鸽,李重光,楼宇丽,钱晓凡,宋庆和,桂进斌,张文燕,王华英.幂函数分布的振幅型光瞳滤波器[J].激光技术,2017,41(5):743-748.
作者姓名:张巧鸽  李重光  楼宇丽  钱晓凡  宋庆和  桂进斌  张文燕  王华英
作者单位:1.昆明理工大学 理学院, 昆明 650500
基金项目:国家自然科学基金资助项目,云南省省级人培基金资助项目,云南省科技计划资助项目,云南省高等学校卓越青年教师特殊培养资助项目
摘    要:为了提高衍射远场显微成像的分辨率,采用一种振幅透过率随半径呈幂函数分布的光瞳滤波器进行了理论分析和数值模拟。通过在光路中加入幂函数分布的振幅型光瞳滤波器,利用标量衍射理论推导出夫琅禾费衍射分布的计算公式;通过MATLAB软件给出衍射图样,对比衍射分布的主瓣宽度。结果表明,当幂次数为3时,模拟仿真的衍射分布斯特雷尔比为0.16,最大旁瓣强度比为0.1,分辨参量为0.76,分辨率提高倍数为1.3;随着振幅透过率幂次数的增加,主瓣宽度依次减小;同时也伴随着主瓣强度降低和旁瓣强度增大的缺点。这一研究对于远场光学显微镜实现超分辨成像是有帮助的。

关 键 词:显微    光瞳滤波器    衍射分布    主瓣宽度    斯特雷尔比    超分辨
收稿时间:2016-10-08

Amplitude optical pupil filters with power function distribution
ZHANG Qiaoge,LI Chongguang,LOU Yuli,QIAN Xiaofan,SONG Qinghe,GUI Jinbin,ZHANG Wenyan,WANG Huaying.Amplitude optical pupil filters with power function distribution[J].Laser Technology,2017,41(5):743-748.
Authors:ZHANG Qiaoge  LI Chongguang  LOU Yuli  QIAN Xiaofan  SONG Qinghe  GUI Jinbin  ZHANG Wenyan  WANG Huaying
Abstract:In order to improve the resolution of far-field diffraction microscopy, a pupil filter whose amplitude transmittance had the distribution of power function with radius was proposed.Theoretical analysis and numerical simulation were carried out.By using scalar diffraction theory, the formula of Fraunhofer diffraction distribution was derived when an amplitude pupil filter with the distribution of power function was added in optical path.Diffraction pattern was obtained through MATLAB software, and the main lobe width of diffraction distribution was compared.The results show that when the power number is 3, Strehl ratio of diffraction distribution is 0.16, the maximum sidelobe intensity ratio is 0.1, the resolution parameter is 0.76, and the enhancement factor of resolution is 1.3.With the increase of power number of amplitude transmittance, the main lobe width decreases.At the same time, the main lobe intensity decreases and the side lobe intensity increases.This study is helpful for the realization of super-resolution imaging in the far field optical microscopes.
Keywords:microscopy  optical pupil filter  diffraction intensity distribution  main lobe width  Strehl ratio  super-resolution
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