Experimental assessment of determining the average size of speckles
Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ, Tome 30 (2024) no. 4, pp. 84-91 Cet article a éte moissonné depuis la source Math-Net.Ru

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The paper proposes a method for estimating the average speckle size using experimentally recorded images of speckle fields on a CMOS matrix. This method can be useful when used in speckle interferometry methods when determining their metrological parameters.
Keywords: speckle field, average speckle size, CMOS matrix, binarization
Mots-clés : segmentation.
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R. N. Sergeev. Experimental assessment of determining the average size of speckles. Vestnik Samarskogo universiteta. Estestvennonaučnaâ seriâ, Tome 30 (2024) no. 4, pp. 84-91. http://geodesic.mathdoc.fr/item/VSGU_2024_30_4_a5/

[1] Franson M., Optika speklov, Mir, M., 1980, 172 pp. https://libcats.org/book/438857

[2] Dainty J.C., Laser Speckle and Related Phenomena, Springer-Verlag Berlin, Heidelberg GmbH, Berlin, 1975, 288 pp. https://iypt.ru/wp-content/uploads/2019/07/Topics-in-Applied-Physics-Volume-9.pdf

[3] Goodman J.W., “Speckle Phenomena in Optics: Theory and Applications. Englewood”, Colorado: Roberts and Company Publishers, 2007, 387 pp. https://books.google.ru/books?id=MXAkngEACAAJ&redir_esc=y

[4] Zeldovich B.Ya., Pilipetskii N.F., Shkunov V.V., Obraschenie volnovogo fronta, Nauka, Glavnaya redaktsiya fiziko-matematicheskoi literatury, M., 1985, 240 pp. https://libcats.org/book/504837

[5] Klimenko I.S., Golografiya sfokusirovannykh izobrazhenii i spekl-interferometriya, Nauka, Glavnaya redaktsiya fiz.-mat. lit., M., 1985, 224 pp. https://djvu.online/file/9EmghZQLXqIX4

[6] Marti Lopes L., “K opredeleniyu poperechnogo razmera speklov”, Zhurnal Tekhnicheskoi Fiziki, 61:8 (1991), 144–148

[7] Alexander T.L., Harvey J.E., Weeks A.R., “Average speckle size as a function of intensity threshold level: comparison of experimental measurements with theory”, Applied Optics, 33:35 (1994), 8240–8250 | DOI

[8] Salnikov I.I., Rastrovye prostranstvenno-vremennye signaly v sistemakh analiza izobrazhenii, FIZMATLIT, M., 2009, 248 pp. https://knigogid.ru/books/1918446-rastrovye-prostranstvenno-vremennye-signaly-v-sistemah-analiza-izobrazheniy

[9] Krasilnikov N.N., Tsifrovaya obrabotka 2D- i 3D-izobrazhenii, BKhV-Peterburg, Sankt-Peterburg, 2011, 608 pp. https://books.google.ru/books?id=ssYLMX5gLpkC&printsec==frontcover&hl=ru#v=onepage&q&f=false

[10] Keler A., Bredski G., Izuchaem OpenCV 3, DMK Press, M., 2017, 826 pp.

[11] Solem Ya.E., Programmirovanie kompyuternogo zreniya na yazyke Python, DMK-Press, M., 2016, 312 pp. https://vk.com/wall-53449719_9798?ysclid=m5w8gnmmrl556769599

[12] Khill K., Nauchnoe programmirovanie na Python, DMK Press, M., 2021, 646 pp. https://www.rulit.me/author/hill-kristian/nauchnoe-programmirovanie-na-python-download-677121.html