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自由空间分数、分数透镜和分数成像系统。

Fractional free space, fractional lenses, and fractional imaging systems.

作者信息

Sümbül Uygar, Ozaktas Haldun M

机构信息

Department of Electrical Engineering, Bilkent University, TR-06533 Bilkent, Ankara, Turkey.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2003 Nov;20(11):2033-40. doi: 10.1364/josaa.20.002033.

Abstract

Continuum extensions of common dual pairs of operators are presented and consolidated, based on the fractional Fourier transform. In particular, the fractional chirp multiplication, fractional chirp convolution, and fractional scaling operators are defined and expressed in terms of their common nonfractional special cases, revealing precisely how they are interpolations of their conventional counterparts. Optical realizations of these operators are possible with use of common physical components. These three operators can be interpreted as fractional lenses, fractional free space, and fractional imaging systems, respectively. Any optical system consisting of an arbitrary concatenation of sections of free space and thin lenses can be interpreted as a fractional imaging system with spherical reference surfaces. As a special case, a system departing from the classical single-lens imaging condition can be interpreted as a fractional imaging system.

摘要

基于分数阶傅里叶变换,给出并巩固了常见对偶算子对的连续统扩展。特别地,定义了分数阶线性调频乘法、分数阶线性调频卷积和分数阶缩放算子,并根据它们常见的非分数阶特殊情况进行了表述,精确揭示了它们是如何对传统对应算子进行插值的。利用常见的物理组件可以实现这些算子的光学实现。这三个算子可分别解释为分数阶透镜、分数阶自由空间和分数阶成像系统。任何由自由空间段和薄透镜的任意串联组成的光学系统都可解释为具有球面参考面的分数阶成像系统。作为一个特殊情况,偏离经典单透镜成像条件的系统可解释为分数阶成像系统。

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