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Overview of techniques applicable to self-interference incoherent digital holography

机译:适用于自干涉非相干数字全息术的技术概述

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摘要

Self-interference incoherent digital holography (SIDH) retrieves the complex hologram from the object illuminated by the incoherent light. Supported by the adaptive optic feature, SIDH is readily applicable to the ocular imaging to investigate the human retinal cells. Considering the practical issues, issues related to resolution, phase-shifting, and contrast should be addressed to implement the viable SIDH system which is capable of recording the holographic information of human retinal cells under the incoherent illumination. Super resolution image reconstruction technique can be directly applied to SIDH to enhance the resolution of the system without any change of configuration. We present the improved way to incorporate the phase-shifting itself into the lateral shift required by the super resolution technique. To deal with the phase-shifting issue, we present an arbitrary phase shift retrieval algorithm which can reduce the number of phase-shift and accept the blind phase-shift. The single-shot imaging is also possible by adopting the off-axis configuration of SIDH. We will provide the detailed procedures to retrieve the complex hologram using the proposed arbitrary phase shifting algorithm and the off-axis configuration.
机译:自干涉非相干数字全息术(SIDH)从非相干光照射的物体中检索复杂的全息图。在自适应光学功能的支持下,SIDH易于应用于眼部成像以研究人的视网膜细胞。考虑到实际问题,应该解决与分辨率,相移和对比度有关的问题,以实现可行的SIDH系统,该系统能够在非相干照明下记录人视网膜细胞的全息信息。超分辨率图像重建技术可以直接应用于SIDH,以提高系统的分辨率,而无需更改任何配置。我们提出了一种改进的方法,可以将相移本身合并到超分辨率技术所需的横向偏移中。为了解决相移问题,我们提出了一种任意相移检索算法,该算法可以减少相移数并接受盲相移。通过采用SIDH的离轴配置,也可以进行单次成像。我们将提供使用建议的任意相移算法和离轴配置来检索复杂全息图的详细过程。

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