Design of cascaded diffractive optical elements generating different intensity distributions at several operating wavelengths

IF 3.1 3区 物理与天体物理 Q2 Engineering Optik Pub Date : 2025-02-01 Epub Date: 2024-11-26 DOI:10.1016/j.ijleo.2024.172140
Georgy A. Motz , Daniil V. Soshnikov , Leonid L. Doskolovich , Egor V. Byzov , Evgeni A. Bezus , Dmitry A. Bykov
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Abstract

We consider the design of cascaded diffractive optical elements (DOEs) for generating specified intensity distributions for several incident beams with different wavelengths. For each incident beam with a given wavelength, the cascaded DOE forms a different specified intensity distribution. The problem of DOE design is formulated as the problem of minimizing a functional that depends on the functions of diffractive microrelief height of the cascaded DOE and represents the deviations of the intensity distributions generated at the operating wavelengths from the specified ones. Explicit expressions are obtained for the derivatives of the functional, and on this basis, a gradient method for calculating a cascaded DOE is formulated. The proposed gradient method is used for the calculation of cascaded DOEs focusing radiation of three different wavelengths into different areas. In particular, the calculation of a cascaded DOE generating a complex color image of parrots is considered. The presented numerical simulation results demonstrate high performance of the proposed method.
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级联衍射光学元件在不同工作波长下产生不同强度分布的设计
我们考虑了级联衍射光学元件(DOEs)的设计,以产生不同波长的入射光束的指定强度分布。对于给定波长的每个入射光束,级联DOE形成不同的指定强度分布。DOE设计问题被表述为最小化函数的问题,该函数依赖于级联DOE的衍射微像高度函数,并表示在工作波长处产生的强度分布与指定波长的偏差。得到了泛函导数的显式表达式,并在此基础上提出了计算级联DOE的梯度法。利用所提出的梯度法计算了三种不同波长的DOEs级联聚焦辐射到不同区域的情况。特别考虑了产生复杂鹦鹉彩色图像的级联DOE的计算。数值仿真结果表明了该方法的有效性。
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来源期刊
Optik
Optik 物理-光学
CiteScore
6.90
自引率
12.90%
发文量
1471
审稿时长
46 days
期刊介绍: Optik publishes articles on all subjects related to light and electron optics and offers a survey on the state of research and technical development within the following fields: Optics: -Optics design, geometrical and beam optics, wave optics- Optical and micro-optical components, diffractive optics, devices and systems- Photoelectric and optoelectronic devices- Optical properties of materials, nonlinear optics, wave propagation and transmission in homogeneous and inhomogeneous materials- Information optics, image formation and processing, holographic techniques, microscopes and spectrometer techniques, and image analysis- Optical testing and measuring techniques- Optical communication and computing- Physiological optics- As well as other related topics.
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