Paper
20 December 2023 3D polarization-interference metrology of polycrystalline structure of self-assembled polycrystalline soft matter films
Olexander Ushenko, Yuriy Ushenko, Olexandra Litvinenko, Oleksandr Salega, Mykhailo Gorsky, Olexander Dubolazov, Vyacheslav Gantyuk, Larysa Nykyforova, Mariana Kovtoniuk, Jacek Klimek, Aliya Kalizhanova, Ainur Kozbakova
Author Affiliations +
Proceedings Volume 12985, Optical Fibers and Their Applications 2023; 129850N (2023) https://doi.org/10.1117/12.3023044
Event: Optical Fibers and Their Applications 2023, 2023, Lublin, Poland
Abstract
The results of layer-by-layer measurements of the coordinate distributions of the polarization ellipticity of laser radiation transformed by self-assembled polycrystalline soft matter films - bile films are presented. The efficiency of the method of 3D polarization mapping of polycrystalline networks in differentiating optically anisotropic films of bile from healthy donors and patients with type 2 diabetes mellitus and non-calculous cholecystitis is considered. High accuracy (90.3% ≤ Ac ≤ 93.1%) of differentiation of normal and pathological conditions was achieved.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Olexander Ushenko, Yuriy Ushenko, Olexandra Litvinenko, Oleksandr Salega, Mykhailo Gorsky, Olexander Dubolazov, Vyacheslav Gantyuk, Larysa Nykyforova, Mariana Kovtoniuk, Jacek Klimek, Aliya Kalizhanova, and Ainur Kozbakova "3D polarization-interference metrology of polycrystalline structure of self-assembled polycrystalline soft matter films", Proc. SPIE 12985, Optical Fibers and Their Applications 2023, 129850N (20 December 2023); https://doi.org/10.1117/12.3023044
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Polarization

Actinium

Geometrical optics

Anisotropy

Tunable filters

Biological samples

Digital holography

Back to Top