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具有改进性能的编码孔径相关全息术系统[特邀报告]

Coded aperture correlation holography system with improved performance [Invited].

作者信息

Vijayakumar A, Kashter Yuval, Kelner Roy, Rosen Joseph

出版信息

Appl Opt. 2017 May 1;56(13):F67-F77. doi: 10.1364/AO.56.000F67.

Abstract

Coded aperture correlation holography (COACH) is a recently introduced technique for recording incoherent digital holograms of general three-dimensional scenes. In COACH, a random-like coded phase mask (CPM) is used as a coded aperture. Even though the CPM is optimized to reduce background noise, there is still a substantial amount of noise, mitigating the performance of COACH. In order to reduce the noise, we first modify the hologram reconstruction method. Instead of computing the correlation between a complex hologram of the entire object and a hologram of a source point, in this study the numerical correlation is performed with a phase-only filter. In other words, the phase function of the Fourier transform of the source point hologram is used as the spatial filter in the correlation process. Furthermore, we propose and demonstrate two additional methods for reducing the background noise in COACH. The first is based on the integration of a quadratic phase function, as used in Fresnel incoherent correlation holography (FINCH), with the CPM of COACH. This hybrid COACH-FINCH system enables a dynamic trade-off between the amount of background noise and the axial resolution of the system. The second method is employed by recording COACH holograms with multiple independent CPMs and averaging over the reconstructed images. The results of the above two techniques are compared with FINCH and with a regular imaging system.

摘要

编码孔径相关全息术(COACH)是一种最近引入的用于记录一般三维场景非相干数字全息图的技术。在COACH中,一个类似随机的编码相位掩模(CPM)被用作编码孔径。尽管CPM经过优化以减少背景噪声,但仍存在大量噪声,这会降低COACH的性能。为了降低噪声,我们首先修改全息图重建方法。在本研究中,不是计算整个物体的复全息图与源点全息图之间的相关性,而是使用仅相位滤波器进行数值相关。换句话说,源点全息图的傅里叶变换的相位函数在相关过程中用作空间滤波器。此外,我们提出并演示了另外两种降低COACH中背景噪声的方法。第一种方法基于将菲涅耳非相干相关全息术(FINCH)中使用的二次相位函数与COACH的CPM相结合。这种混合的COACH - FINCH系统能够在背景噪声量和系统轴向分辨率之间进行动态权衡。第二种方法是通过用多个独立的CPM记录COACH全息图并对重建图像进行平均来实现的。将上述两种技术的结果与FINCH和常规成像系统进行了比较。

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