基于Zernike多项式的纯相位瞳孔滤波器设计

Q Physics and Astronomy
Jiang Liu, E. Miao, Y. Sui, Huaijiang Yang
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引用次数: 4

摘要

瞳孔滤光片是改变光学系统焦点附近光强分布以实现景深扩展和超分辨率的一种有效技术。本文利用泽尼克多项式提出了一种新的纯相位瞳孔滤波器设计方法。讨论了离焦Strehl比(S.R.)、超分辨因子(G)和第一副瓣相对强度(M)等设计参数对散焦扩展和超分辨率的影响。与其他两种类型的瞳孔滤波器相比,该滤波器在控制轴向和径向光强分布方面具有优势。最后,进行了离焦成像仿真,进一步验证了所提出的瞳孔滤波器在光学成像系统扩焦和超分辨率方面的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase Only Pupil Filter Design Using Zernike Polynomials
A pupil filter is a useful technique for modifying the light intensity distribution near the focus of an optical system to realize depth of field (DOF) extension and superresolution. In this paper, we proposed a new design of the phase only pupil filter by using Zernike polynomials. The effect of design parameters of the new filters on DOF extension and superresolution are discussed, such as defocus Strehl ratio (S.R.), superresolution factor (G) and relative first side lobe intensity (M). In comparison with the other two types of pupil filters, the proposed filter presents its advantages on controlling both the axial and radial light intensity distribution. Finally, defocused imaging simulations are carried out to further demonstrate the effectiveness and superiority of the proposed pupil filter on DOF extension and superresolution in an optical imaging system.
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CiteScore
0.70
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0.00%
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审稿时长
2.3 months
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