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Experimental study of an off-axis three mirror anastigmatic system with wavefront coding technology

机译:波前编码技术的离轴三反射镜吻合系统的实验研究

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摘要

Wavefront coding (WFC) is a kind of computational imaging technique that controls defocus and defocus related aberrations of optical systems by introducing a specially designed phase distribution to the pupil function. This technology has been applied in many imaging systems to improve performance and/or reduce cost. The application of WFC technology in an off-axis three mirror anastigmatic (TMA) system has been proposed, and the design and optimization of optics, the restoration of degraded images, and the manufacturing of wavefront coded elements have been researched in our previous work. In this paper, we describe the alignment, the imaging experiment, and the image restoration of the off-axis TMA system with WFC technology. The ideal wavefront map is set to be the system error of the interferometer to simplify the assembly, and the coefficients of certain Zernike polynomials are monitored to verify the result in the alignment process. A pinhole of 20 (mu)m diameter and the third plate of WT1005-62 resolution patterns are selected as the targets in the imaging experiment. The comparison of the tail lengths of point spread functions is represented to show the invariance of the image quality in the extended depth of focus. The structure similarity is applied to estimate the relationship among the captured images with varying defocus. We conclude that the experiment results agree with the earlier theoretical analysis.
机译:波前编码(WFC)是一种计算成像技术,可通过将特定设计的相位分布引入光瞳函数来控制光学系统的散焦和散焦相关像差。该技术已被应用于许多成像系统中,以提高性能和/或降低成本。提出了WFC技术在离轴三反射镜吻合(TMA)系统中的应用,并且在我们以前的工作中研究了光学器件的设计和优化,退化图像的恢复以及波前编码元件的制造。在本文中,我们描述了使用WFC技术的离轴TMA系统的对准,成像实验和图像恢复。为了简化装配,将理想的波前图设置为干涉仪的系统误差,并监视某些Zernike多项式的系数以验证对准过程中的结果。选择直径为20μm的针孔和WT1005-62分辨率图案的第三块板作为成像实验中的目标。点扩展函数的尾部长度的比较表示在扩展的焦点深度中显示图像质量的不变性。应用结构相似性来估计散焦变化时所捕获图像之间的关系。我们得出的结论是,实验结果与早期的理论分析相符。

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