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What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?

Fast reconstruction of holographic and diffractive optical elements (DOE) can be implemented by binary digital micromirror devices (DMD). Since micromirrors of the DMD have two positions, the synthesized DOEs must be binary. This work studies the possibility of improving the method of synthesis of a...

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Autores principales: Ovchinnikov, Andrey S., Krasnov, Vitaly V., Cheremkhin, Pavel A., Rodin, Vladislav G., Savchenkova, Ekaterina A., Starikov, Rostislav S., Evtikhiev, Nikolay N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964461/
https://www.ncbi.nlm.nih.gov/pubmed/36826947
http://dx.doi.org/10.3390/jimaging9020028
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author Ovchinnikov, Andrey S.
Krasnov, Vitaly V.
Cheremkhin, Pavel A.
Rodin, Vladislav G.
Savchenkova, Ekaterina A.
Starikov, Rostislav S.
Evtikhiev, Nikolay N.
author_facet Ovchinnikov, Andrey S.
Krasnov, Vitaly V.
Cheremkhin, Pavel A.
Rodin, Vladislav G.
Savchenkova, Ekaterina A.
Starikov, Rostislav S.
Evtikhiev, Nikolay N.
author_sort Ovchinnikov, Andrey S.
collection PubMed
description Fast reconstruction of holographic and diffractive optical elements (DOE) can be implemented by binary digital micromirror devices (DMD). Since micromirrors of the DMD have two positions, the synthesized DOEs must be binary. This work studies the possibility of improving the method of synthesis of amplitude binary inline Fresnel holograms in divergent beams. The method consists of the modified Gerchberg–Saxton algorithm, Otsu binarization and direct search with random trajectory technique. To achieve a better quality of reconstruction, various binarization methods were compared. We performed numerical and optical experiments using the DMD. Holograms of halftone image with size up to 1024 × 1024 pixels were synthesized. It was determined that local and several global threshold methods provide the best quality. Compared to the Otsu binarization used in the original method of the synthesis, the reconstruction quality (MSE and SSIM values) is improved by 46% and the diffraction efficiency is increased by 27%.
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spelling pubmed-99644612023-02-26 What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique? Ovchinnikov, Andrey S. Krasnov, Vitaly V. Cheremkhin, Pavel A. Rodin, Vladislav G. Savchenkova, Ekaterina A. Starikov, Rostislav S. Evtikhiev, Nikolay N. J Imaging Article Fast reconstruction of holographic and diffractive optical elements (DOE) can be implemented by binary digital micromirror devices (DMD). Since micromirrors of the DMD have two positions, the synthesized DOEs must be binary. This work studies the possibility of improving the method of synthesis of amplitude binary inline Fresnel holograms in divergent beams. The method consists of the modified Gerchberg–Saxton algorithm, Otsu binarization and direct search with random trajectory technique. To achieve a better quality of reconstruction, various binarization methods were compared. We performed numerical and optical experiments using the DMD. Holograms of halftone image with size up to 1024 × 1024 pixels were synthesized. It was determined that local and several global threshold methods provide the best quality. Compared to the Otsu binarization used in the original method of the synthesis, the reconstruction quality (MSE and SSIM values) is improved by 46% and the diffraction efficiency is increased by 27%. MDPI 2023-01-27 /pmc/articles/PMC9964461/ /pubmed/36826947 http://dx.doi.org/10.3390/jimaging9020028 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ovchinnikov, Andrey S.
Krasnov, Vitaly V.
Cheremkhin, Pavel A.
Rodin, Vladislav G.
Savchenkova, Ekaterina A.
Starikov, Rostislav S.
Evtikhiev, Nikolay N.
What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?
title What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?
title_full What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?
title_fullStr What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?
title_full_unstemmed What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?
title_short What Binarization Method Is the Best for Amplitude Inline Fresnel Holograms Synthesized for Divergent Beams Using the Direct Search with Random Trajectory Technique?
title_sort what binarization method is the best for amplitude inline fresnel holograms synthesized for divergent beams using the direct search with random trajectory technique?
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964461/
https://www.ncbi.nlm.nih.gov/pubmed/36826947
http://dx.doi.org/10.3390/jimaging9020028
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