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Full-field and single-shot quantitative phase microscopy using dynamic speckle illumination

Authors
Choi, YoungwoonYang, Taeseok DanielLee, Kyoung JinChoi, Wonshik
Issue Date
1-7월-2011
Publisher
OPTICAL SOC AMER
Citation
OPTICS LETTERS, v.36, no.13, pp.2465 - 2467
Indexed
SCIE
SCOPUS
Journal Title
OPTICS LETTERS
Volume
36
Number
13
Start Page
2465
End Page
2467
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/112025
DOI
10.1364/OL.36.002465
ISSN
0146-9592
Abstract
We developed an off-axis quantitative phase microscopy that works for a light source with an extremely short spatial coherence length in order to reduce the diffraction noise and enhance the spatial resolution. A dynamic speckle wave whose coherence length is 440nm was used as an illumination source. To implement an off-axis interferometry for a source of low spatial coherence, a diffraction grating was inserted in the reference beam path. In doing so, an oblique illumination was generated without rotation of the wavefront, which leads to a full-field and single-shot phase recording with improved phase sensitivity of more than a factor of 10 in comparison with coherent illumination. The spatial resolution, both laterally and axially, and the depth selectivity are significantly enhanced due to the wide angular spectrum of the speckle wave. We applied our method to image the dynamics of small intracellular particles in live biological cells. With enhanced phase sensitivity and speed, the proposed method will serve as a useful tool to study the dynamics of biological specimens. (C) 2011 Optical Society of America
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