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Analysis of a cylindrical microlens array with long focal depth by a rigorous boundary-element method and scalar approximations

机译:用严格的边界元方法和标量近似分析长焦深的圆柱微透镜阵列

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We investigated the focal characteristics of open-regional cylindrical microlens arrays with long focal depth by using a rigorous boundary-element method (BEM) and three scalar methods, i.e., a Kirchhoff and two Rayleigh-Sommerfeld diffraction integral forms. Numerical analysis clearly shows that the model cylindrical microlens arrays with different f-numbers can generate focusing beams with both long focal depth and high transverse resolution. The performance of the cylindrical microlens arrays, such as extended focal depth, relative extended focal depth, diffraction efficiency, and focal spot size, is appraised and analyzed. From a comparison of the results obtained by the rigorous BEM and by scalar approximations, we found that the results are quite similar when the f-number equals f/1.6; however, they are quite different for f/0.8. We conclude that the BEM should be adopted to analyze the performance of a microlens array system whose f-number is less than f/1.0. (C) 2004 Optical Society of America.
机译:我们通过使用严格的边界元方法(BEM)和三种标量方法(即Kirchhoff和两种Rayleigh-Sommerfeld衍射积分形式)研究了具有长焦深的开放区域圆柱微透镜阵列的焦点特性。数值分析清楚地表明,具有不同f值的模型圆柱微透镜阵列可以产生长焦深和高横向分辨率的聚焦光束。评估并分析了圆柱微透镜阵列的性能,例如扩展的焦深,相对扩展的焦深,衍射效率和焦斑大小。通过严格的BEM和标量逼近获得的结果的比较,我们发现,当f值等于f / 1.6时,结果非常相似。但是,对于f / 0.8,它们是完全不同的。我们得出结论,应该采用BEM来分析f值小于f / 1.0的微透镜阵列系统的性能。 (C)2004年美国眼镜学会。

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