Wavefront coding with Jacobi-Fourier phase masks

E. Gonzalez-Amador, A. Padilla-Vivanco, C. Toxqui-Quitl, J. M. Olvera-Angeles, J. Arines, E. Acosta
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引用次数: 6

Abstract

Wavefront coding is a hybrid optical-computational technique that makes use of a phase modulating element in conjunction with a deconvolution algorithm to extend the depth of focus of imaging systems. The phase mask codes the wave-front in such a way that the point-spread function do not change appreciably as a function of defocus. In this work, the modulation is introduced by phase masks in the shape of a subset of Jacobi-Fourier polynomials. We will show, by both numerical simulations and experiments that the Jacobi-Fourier polynomial phase masks are good candidates for high-resolution images under noise presence.
雅可比-傅立叶相位掩模的波前编码
波前编码是一种混合光学计算技术,它利用相位调制元件和反卷积算法来扩展成像系统的聚焦深度。相位掩模以这样一种方式对波前进行编码,使得点扩散函数作为离焦函数不会发生明显的变化。在这项工作中,调制是由雅可比-傅立叶多项式子集形状的相位掩模引入的。我们将通过数值模拟和实验证明,雅可比-傅立叶多项式相位掩模是存在噪声的高分辨率图像的良好候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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