Doubling the field of view and eliminating the replica overlap problem in common-path shearing quantitative phase imaging

Fuente: arXiv
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Main Authors: Rogalski, Mikołaj, Zdańkowski, Piotr, Heto, Matyas, Mierzejewska, Jolanta, Lenarcik, Małgorzata, Li, Zhuoshi, Sun, Jiasong, Zuo, Chao, Trusiak, Maciej
Format: Preprint
Published: 2025
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author Rogalski, Mikołaj
Zdańkowski, Piotr
Heto, Matyas
Mierzejewska, Jolanta
Lenarcik, Małgorzata
Li, Zhuoshi
Sun, Jiasong
Zuo, Chao
Trusiak, Maciej
author_facet Rogalski, Mikołaj
Zdańkowski, Piotr
Heto, Matyas
Mierzejewska, Jolanta
Lenarcik, Małgorzata
Li, Zhuoshi
Sun, Jiasong
Zuo, Chao
Trusiak, Maciej
contents Quantitative phase imaging (QPI) enables label-free, high-contrast visualization of transparent specimens, but its common implementation in off-axis digital holographic microscopy (DHM) requires a separate reference beam, which increases system complexity and sensitivity to noise and vibrations. Common-path shearing DHMs overcome these drawbacks by eliminating the reference arm, yet they suffer from sheared object beam (replica) overlap, as both interfering sheared beams traverse the sample and generate superimposed phase images. This limits their use to sparse objects only. Here we introduce R2D-QPI, a method that numerically decouples object and replica fields of view through controlled shear scanning. The method analytically separates overlapped phase images and effectively doubles the imaged area, requiring only two measurements. We experimentally validate the approach on a phase resolution test target, yeast cells, and human thyroid tissue slices, demonstrating accurate reconstruction even in highly confluent samples with strong object-replica overlap. The results establish R2D-QPI as a robust and versatile solution for common-path QPI, enabling wide-field, label-free phase imaging with minimal data acquisition and strong potential for applications in biological and medical microscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2510_01762
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Doubling the field of view and eliminating the replica overlap problem in common-path shearing quantitative phase imaging
Rogalski, Mikołaj
Zdańkowski, Piotr
Heto, Matyas
Mierzejewska, Jolanta
Lenarcik, Małgorzata
Li, Zhuoshi
Sun, Jiasong
Zuo, Chao
Trusiak, Maciej
Optics
Quantitative phase imaging (QPI) enables label-free, high-contrast visualization of transparent specimens, but its common implementation in off-axis digital holographic microscopy (DHM) requires a separate reference beam, which increases system complexity and sensitivity to noise and vibrations. Common-path shearing DHMs overcome these drawbacks by eliminating the reference arm, yet they suffer from sheared object beam (replica) overlap, as both interfering sheared beams traverse the sample and generate superimposed phase images. This limits their use to sparse objects only. Here we introduce R2D-QPI, a method that numerically decouples object and replica fields of view through controlled shear scanning. The method analytically separates overlapped phase images and effectively doubles the imaged area, requiring only two measurements. We experimentally validate the approach on a phase resolution test target, yeast cells, and human thyroid tissue slices, demonstrating accurate reconstruction even in highly confluent samples with strong object-replica overlap. The results establish R2D-QPI as a robust and versatile solution for common-path QPI, enabling wide-field, label-free phase imaging with minimal data acquisition and strong potential for applications in biological and medical microscopy.
title Doubling the field of view and eliminating the replica overlap problem in common-path shearing quantitative phase imaging
topic Optics
url https://arxiv.org/abs/2510.01762