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数值衍射计算方法分析:从相空间光学和采样定理的角度

Analysis of numerical diffraction calculation methods: from the perspective of phase space optics and the sampling theorem.

作者信息

Zhang Wenhui, Zhang Hao, Sheppard Colin J R, Jin Guofan

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2020 Nov 1;37(11):1748-1766. doi: 10.1364/JOSAA.401908.

DOI:10.1364/JOSAA.401908
PMID:33175751
Abstract

Diffraction calculations are widely used in applications that require numerical simulation of optical wave propagation. Different numerical diffraction calculation methods have their own transform and sampling properties. In this study, we provide a unified analysis where five popular fast diffraction calculation methods are analyzed from the perspective of phase space optics and the sampling theorem: single fast Fourier transform-based Fresnel transform, Fresnel transfer function approach, Fresnel impulse response approach, angular spectrum method, and Rayleigh-Sommerfeld convolution. The evolutions of an input signal's space-bandwidth product (SBP) during wave propagation are illustrated with the help of a phase space diagram (PSD) and an ABCD matrix. It is demonstrated that all of the above methods cannot make full use of the SBP of the input signal after diffraction; and some transform properties have been ignored. Each method has its own restrictions and applicable range. The reason why different methods have different applicable ranges is explained with physical models. After comprehensively studying and comparing the effect on the SBP and sampling properties of these methods, suggestions are given for choosing the proper method for different applications and overcoming the restrictions of corresponding methods. The PSD and ABCD matrix are used to illustrate the properties of these methods intuitively. Numerical results are presented to verify the analysis, and potential ways to develop new diffraction calculation methods are also discussed.

摘要

衍射计算广泛应用于需要对光波传播进行数值模拟的领域。不同的数值衍射计算方法具有各自的变换和采样特性。在本研究中,我们提供了一种统一的分析方法,从相空间光学和采样定理的角度对五种常用的快速衍射计算方法进行分析:基于单次快速傅里叶变换的菲涅耳变换、菲涅耳传递函数法、菲涅耳脉冲响应法、角谱法和瑞利 - 索末菲卷积法。借助相空间图(PSD)和ABCD矩阵说明了输入信号的空间带宽积(SBP)在波传播过程中的演变。结果表明,上述所有方法在衍射后都不能充分利用输入信号的SBP,并且一些变换特性被忽略了。每种方法都有其自身的限制和适用范围。用物理模型解释了不同方法具有不同适用范围的原因。在全面研究和比较这些方法对SBP和采样特性的影响后,针对不同应用选择合适方法并克服相应方法的限制给出了建议。利用PSD和ABCD矩阵直观地说明了这些方法的特性。给出了数值结果以验证分析,并讨论了开发新的衍射计算方法的潜在途径。

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