Analyzing the Symmetry Properties of a Distribution in the Focal Plane for a Focusing Element with Periodic Angle Dependence of Phase

S. Khonina, A. Ustinov
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引用次数: 4

Abstract

We analyze the symmetry properties of the focal plane distribution when light is focused with an element characterized by a periodic angular dependent phase, sin () or cos (). The majority of wave aberrations can be described using the said phase function. The focal distribution is analytically shown to be a real function at odd values of m, which provides a simple technique for generating designed wave aberrations by means of binary diffractive optical elements. Such a possibility may prove useful in tight focusing, as the presence of definite wave aberrations allows the focal spot size to be decreased. The analytical computations are illustrated by the numerical simulation, which shows that by varying the radial parameters the focal spot configuration can be varied, whereas the central part symmetry is mainly determined by the parity of m: for even the symmetry order is 2m and for odd is m.
相位依赖周期角的聚焦元件焦平面分布对称性分析
我们分析了以周期性角相关相位sin()或cos()为特征的元件聚焦光时焦平面分布的对称性。大多数波像差可以用上述相位函数来描述。在m的奇值处,解析地证明了焦分布是一个实函数,这为利用二元衍射光学元件产生设计波像差提供了一种简单的技术。这种可能性在紧聚焦中可能被证明是有用的,因为确定的波像差的存在允许焦斑尺寸减小。通过数值模拟对解析计算结果进行了说明,结果表明,通过改变径向参数可以改变焦斑的构型,而中心部分的对称性主要由m的宇称决定,偶对称阶数为2m,奇对称阶数为m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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