Publication detail

Tomographic microscope for low-coherent quantitative phase imaging

ŠPAČEK, M. DVOŘÁK, V. PACHL, P. BUČEK, J. NEUMANOVÁ, A. DOSTÁL, Z.

English title

Tomographic microscope for low-coherent quantitative phase imaging

Type

conference paper

Language

en

Original abstract

A novel tomographic microscope setup utilizing the principle of Holographic Incoherent-light-source Quantitative Phase Imaging is introduced. This setup combines the advantages of achromatic off-axis holography with the ultrafast operation of a digital micromirror device-based tomographic illuminator. The imaging theory is explained, and the optical design of the microscope is described. The functionality of the microscope modules is demonstrated experimentally using a light source of limited spatial coherence.

English abstract

A novel tomographic microscope setup utilizing the principle of Holographic Incoherent-light-source Quantitative Phase Imaging is introduced. This setup combines the advantages of achromatic off-axis holography with the ultrafast operation of a digital micromirror device-based tomographic illuminator. The imaging theory is explained, and the optical design of the microscope is described. The functionality of the microscope modules is demonstrated experimentally using a light source of limited spatial coherence.

Keywords in English

Digital holographic microscopy; Quantitative phase imaging; Tomography

Released

17.02.2025

Publisher

SPIE

ISBN

9781510688087

ISSN

0277-786X

Book

Proceedings Volume 13508, 23rd Slovak-Czech-Polish Optical Conference on Wave and Quantum Aspects of Contemporary Optics;

Volume

13508

Number

1

Pages from–to

1–6

Pages count

6

BIBTEX


@inproceedings{BUT198111,
  author="Matěj {Špaček} and Vladislav {Dvořák} and Přemysl {Pachl} and Jozef {Buček} and Anna {Neumanová} and Zbyněk {Dostál},
  title="Tomographic microscope for low-coherent quantitative phase imaging",
  booktitle="Proceedings Volume 13508, 23rd Slovak-Czech-Polish Optical Conference on Wave and Quantum Aspects of Contemporary Optics; ",
  year="2025",
  volume="13508",
  number="1",
  month="February",
  pages="1--6",
  publisher="SPIE",
  isbn="9781510688087",
  issn="0277-786X"
}