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微透镜填充因子快速检测方法
引用本文:史立芳,马君显,董小春,杜春雷.微透镜填充因子快速检测方法[J].光电工程,2007,34(6):53-56.
作者姓名:史立芳  马君显  董小春  杜春雷
作者单位:1. 深圳大学,信息工程学院,新技术中心,广东,深圳,518060;中国科学院光电技术研究所,四川,成都,610209;中国科学院研究生院,北京,100039
2. 深圳大学,信息工程学院,新技术中心,广东,深圳,518060
3. 中国科学院光电技术研究所,四川,成都,610209
摘    要:本文提出了一种有效的微透镜阵列填充因子快速检测方法.文章从光的标量衍射理论出发,分析了连续浮雕微透镜阵列的衍射光斑分布与透镜子口径、透镜矢高之间的关系,推导出了微透镜阵列远场衍射光斑的理论模型,用该模型对不同填充因子的微透镜阵列为例进行计算机模拟分析,并且搭建了实验装置来获得实际的衍射光斑.结果表明,模拟光强分布与实际衍射光斑相当接近,在此基础上给出了微透镜衍射光斑分布与填充因子之间的半定量关系,为微透镜阵列的快速检测提供了一种有效手段.这种方法可以实现微透镜阵列的准确、简单、低成本的填充因子检测,极大地提高了生产效率,满足了实际测试的要求.

关 键 词:微透镜阵列  衍射光斑  快速检测
文章编号:1003-501X(2007)06-0053-04
收稿时间:2006/12/18
修稿时间:2006-12-182007-04-06

Filling factor fast detecting method for microlens array
SHI Li-fang,MA Jun-xian,DONG Xiao-chun,DU Chun-lei.Filling factor fast detecting method for microlens array[J].Opto-Electronic Engineering,2007,34(6):53-56.
Authors:SHI Li-fang  MA Jun-xian  DONG Xiao-chun  DU Chun-lei
Affiliation:1. School of Information Engineering, Shenzhen University, Shenzhen 518060, China; 2. The Institute of Optics and Electronics, the Chinese Academy of Sciences, Chengdu 610209, China; 3. Graduate School of the Chinese Academy of Sciences, Beijing 100039, China
Abstract:An effective and fast detecting method for microtens array filling factor is proposed in this paper. The relationship between the diffraction field of microlens array and lens diameter, sag height is analyzed, and theoretical model is derived with the scalar diffraction theory. The formulation of diffraction field of microlens array is established, computational simulation is carried out for arrays with different filling factors using this formulation, and experiment systems are constructed to obtain actual diffraction field. The simulation intensity distribution calculated definitely approaches the actual diffraction field through contrast. Based on the above analysis, a semi-quantificationally relationship between diffraction field of microlens array and filling factor is given, and a new effective and fast detecting method for microlens array is presented.
Keywords:Microlens array  Diffraction field  Fast detecting
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