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双缝全息术——一种单次无透镜成像技术。

Double-slit holography-a single-shot lensless imaging technique.

作者信息

Wicki Flavio, Latychevskaia Tatiana

机构信息

Physics Department, University of Zurich, Winterthurerstrasse 190, 8057, Zurich, Switzerland.

Paul Scherrer Institute, Forschungsstrasse 111, 5232, Villigen, Switzerland.

出版信息

Sci Rep. 2024 May 31;14(1):12528. doi: 10.1038/s41598-024-62785-7.

Abstract

In this study, we propose a new method for single-shot, high-resolution lensless imaging called double-slit holography. This technique combines the properties of in-line and off-axis holography in one single-shot measurement using the simplest double-slit device: a plate with two apertures. In double-slit holography, a plane wave illuminates the two apertures giving rise to two spherical waves. While diffraction of one spherical wave from a sample positioned behind the first aperture (the object aperture) provides the object wave, the other spherical wave diffracted from the second (reference) aperture provides the reference wave. The resulting interference pattern in the far-field (hologram) combines the properties of an in-line (or Gabor-type) hologram and an off-axis hologram due to the added reference wave from the second aperture. Both the object and reference waves have the same intensity, which ensures high contrast of the hologram. Due to the off-axis scheme, the amplitude and phase distributions of the sample can be directly reconstructed from the hologram, and the twin image can be easily separated. Due to the object wave being the same as in-line holography with a spherical wave, imaging at different magnifications is similarly done by simply adjusting the aperture-to-sample distance. The resolution of the reconstructed object is given by the numerical aperture of the optical setup and the diameter of the reference aperture. It is shown both by theory and simulations that the resolution of the reconstructed object depends on the diameter of the reference wave aperture but does not depend on the diameter of the object aperture. Light optical proof-of-concept experiments are provided. The proposed method can be particularly practical for X-rays, where optical elements such as beam splitters are not available and conventional off-axis holography schemes cannot be realised.

摘要

在本研究中,我们提出了一种用于单次高分辨率无透镜成像的新方法,称为双缝全息术。该技术在单次测量中结合了同轴全息术和离轴全息术的特性,使用最简单的双缝装置:一块带有两个孔径的平板。在双缝全息术中,平面波照射两个孔径,产生两个球面波。当一个球面波从位于第一个孔径(物孔径)后面的样品发生衍射时提供物波,另一个从第二个(参考)孔径衍射的球面波提供参考波。由于来自第二个孔径的额外参考波,远场中的干涉图案(全息图)结合了同轴(或伽博型)全息图和离轴全息图的特性。物波和参考波具有相同的强度,这确保了全息图的高对比度。由于采用离轴方案,样品的振幅和相位分布可以直接从全息图中重建,并且孪生像可以很容易地分离。由于物波与球面波的同轴全息术相同,通过简单地调整孔径到样品的距离就可以类似地进行不同放大倍数的成像。重建物体的分辨率由光学装置的数值孔径和参考孔径的直径决定。理论和模拟均表明,重建物体的分辨率取决于参考波孔径的直径,而不取决于物孔径的直径。文中提供了光学原理验证实验。所提出的方法对于X射线可能特别实用,因为在X射线中诸如分束器等光学元件不可用,并且传统的离轴全息术方案无法实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3bd/11681018/80f0c08b94ed/41598_2024_62785_Fig1_HTML.jpg

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