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具有最大重叠干涉区域的共光路离轴非相干傅里叶全息术。

Common-path off-axis incoherent Fourier holography with a maximum overlapping interference area.

作者信息

Nguyen Cuong M, Kwon Hyuk-Sang

出版信息

Opt Lett. 2019 Jul 1;44(13):3406-3409. doi: 10.1364/OL.44.003406.

Abstract

In this Letter, we present a new method for recording spatially incoherent common-path off-axis Fourier holograms. This method records the three-dimensional (3D) information of an object into a Fourier hologram without the need of any mechanical scanning with incoherent illumination. The proposed setup consists of two gratings to form a common-path configuration, and two customized cells to create a rotational and radial shearing interferometer. While the first grating is placed on the first image plane, the second grating shifts axially from the second image plane to build off-axis geometry. A lens is used to combine two beams to generate the maximum overlapping area at the hologram plane. Proof-of-concept experiments confirm the ability of such a system to achieve the maximum overlapping interference area, stability of the system against the vibration of surrounding environment, numerical reconstruction using only one fast Fourier transform, and 3D capability to capture a 3D object illuminated by an LED light.

摘要

在本信函中,我们提出了一种记录空间非相干共光路离轴傅里叶全息图的新方法。该方法无需使用非相干照明进行任何机械扫描,就能将物体的三维(3D)信息记录到傅里叶全息图中。所提出的装置由两个光栅组成共光路配置,以及两个定制单元以创建旋转和径向剪切干涉仪。第一个光栅放置在第一像平面上,第二个光栅从第二像平面轴向移动以构建离轴几何结构。使用一个透镜组合两束光,以在全息图平面产生最大重叠区域。概念验证实验证实了该系统能够实现最大重叠干涉区域、系统对周围环境振动的稳定性、仅使用一次快速傅里叶变换的数值重建,以及捕获由LED灯照明的3D物体的3D能力。

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