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  4. Common-path digital holographic microscopy based on a volume holographic grating for quantitative phase imaging.
 
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Common-path digital holographic microscopy based on a volume holographic grating for quantitative phase imaging.

Journal
Optics express
Journal Volume
32
Journal Issue
5
Start Page
7919
End Page
7930
ISSN
1094-4087
Date Issued
2024-02-26
Author(s)
Tsai, Chen-Ming
Vyas, Sunil
Luo, Yuan  
DOI
10.1364/OE.514225
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/722366
Abstract
Digital holographic microscopy (DHM) is a powerful quantitative phase imaging (QPI) technique that is capable of recording sample's phase information to enhance image contrast. In off-axis DHM, high-quality QPI images can be generated within a single recorded hologram, and the system stability can be enhanced by common-path configuration. Diffraction gratings are widely used components in common-path DHM systems; however, the presence of multiple diffraction beams leads to system power loss. Here, we propose and demonstrate implementation of a volume holographic grating (VHG) in common-path DHM, which provides single diffraction order. VHG in common-path DHM (i.e., VHG-DHM) helps in improving signal-to-noise ratio as compared to the conventional DHM. In addition, VHG, with inherently high angular selectivity, reduces image noise caused by stray light. With a simple fabrication process, it is convenient to utilize VHG to control the beam separation angle of DHM. Further, by using Bragg-matched wavelength degeneracy to avoid potential cell damaging effect in blue light, the VHG is designed for recording at a maximum sensitive wavelength of ∼488 nm, while our VHG-DHM is operated at the longer wavelength of red 632.8 nm for cell observation. Experimental results, measured by the VHG-DHM, show the measurement of target thickness ranging from 100 nm to 350 nm. In addition, stability of the system is quantitatively measured. High-contrast QPI images of human lung cancer cells are demonstrated.
SDGs

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Type
journal article

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