Chinese Optics, Volume. 15, Issue 2, 286(2022)
Statistical characteristics of multi-channel cooperative dynamic speckle metric
[1] Stoykova E, Kang H, Kim Y, et al. Evaluation of activity from binary patterns in dynamic speckle analysis[J]. Optics and Lasers in Engineering, 111, 50-57(2018).
[2] [2] Zhang Y, Ceylan Koydemir H, Shimogawa M M, et al. Motilitybased labelfree detection of parasites in bodily fluids using holographic speckle analysis deep learning[J]. Light: Science & Applications, 2018, 7(1).
[3] Wan Y, Fan X, Wang S, et al. Wavemeter capable of simultaneously achieving ultra-high resolution and broad bandwidth by using Rayleigh speckle from single mode fiber[J]. Journal of Lightwave Technology, 39, 2223-2229(2021).
[4] Mendoza-Herrera L J, Schinca D C, Scaffardi L B, et al. Measurement of latex microparticle size by dynamic speckle technique[J]. Optics and Lasers in Engineering, 140, 106528(2021).
[5] Hu H R, Dan X Z, Zhao Q H. et al. Automatic extraction of speckle area in digital image correlation[J]. Chinese Optics, 12, 1329-1337(2019).
[6] [6] Salter P S, Booth M J. Adaptive optics in laser processing[J]. Light: Science & Applications, 2019, 8(1).
[7] Piatrou P, Roggemann M. Beaconless stochastic parallel gradient descent laser beam control: numerical experiments[J]. Applied optics, 46, 6831-6842(2007).
[8] Che D, Li Y, Wu Y, et al. Theory of AdmSPGD algorithm in fiber laser coherent synthesis[J]. Optics Communications, 492, 126953(2021).
[9] Wan Y, Wang S, Fan X, et al. High-resolution wavemeter using Rayleigh speckle obtained by optical time domain reflectometry[J]. Optics letters, 45, 799-802(2020).
[10] Budini, Nicolas, Balducci N, Mulone C, et al. Extraction of dynamic speckle activity information from digital holograms[J]. Optical Engineering, 55.12, 121716(2016).
[11] Davila A, Rayas J A. Single-shot phase detection in a speckle wavemeter for the measurement of femtometric wavelength change[J]. Optics and Lasers in Engineering, 125, 105856.1-105856.5(2020).
[12] Kulkarni R, Pal P, Banoth E. Spatio-temporal analysis of dynamic speckle patterns using singular value decomposition[J]. Optics and Lasers in Engineering, 142, 106588(2021).
[13] Shao H, Zhou Y, Qi J F. et al. GPU accelerated image processing for electronic speckle pattern shearing interferometry[J]. Chinese Journal of Liquid Crystals and Displays., 34, 1021-1029(2019).
[14] Sawatari T, Elek A C. Image plane detection using laser speckle patterns[J]. Applied optics, 12, 881-883(1973).
[15] Yang Z Q, Wu Z S, Zhang Q, . Time correlation function of dynamic speckle of rotating cone target[J]. Acta Optica Sinica, 33, 1029001(2013).
[16] Xu X, Ren X, Zhong F, et al. Optimization of speckle pattern based on integer programming method[J]. Optics and Lasers in Engineering, 133, 106100(2020).
[17] Skipetrov S E, Peuser J, Cerbino R, et al. Noise in laser speckle correlation and imaging techniques[J]. Optics express, 18, 14519-14534(2010).
[18] Stoykova E, Berberova N, Kim Y, et al. Dynamic speckle analysis with smoothed intensity-based activity maps[J]. Optics & Lasers in Engineering, 93, 55-65(2017).
[19] Semenov D V, Miridonov S V, Nippolainen E, et al. Statistical properties of dynamic speckles formed by a deflecting laser beam[J]. Optics express, 16, 1238-1249(2008).
[20] Miridonov S V, Sidorov I, Nippolainen E, et al. Accuracy of measuring systems using dynamic speckles[J]. JOSA A, 26, 745-753(2009).
[21] Vorontsov M A, Kolosov V V, Polnau E. Target-in-the-loop wavefront sensing and control with a Collett-Wolf beacon: speckle-average phase conjugation[J]. Applied optics, 48, A13-A29(2009).
[22] Vorontsov M, Weyrauch T, Lachinova S, et al. Speckle-metric-optimization-based adaptive optics for laser beam projection and coherent beam combining[J]. Optics letters, 37, 2802-2804(2012).
[23] Yin W, Zhong J, Feng S, et al. Composite deep learning framework for absolute 3D shape measurement based on single fringe phase retrieval and speckle correlation[J]. Journal of Physics Photonics, 2, 45009(2020).
[24] Zhang Y C, Liu P, Wang X G. et al. Characterizing curved surface roughness of Wolter-ⅠX-ray grazing incidence telescope[J]. Chinese Optics, 12, 587-595(2019).
[25] [25] Rytov S M, Kravtsov Y A, Tatarskii V I. Principles of statistical radiophysics. 4. Wave propagation through rom media[M]. 1989.
[26] Vorontsov M A. Speckle effects in target-in-the-loop laser beam projection systems[J]. Advanced Optical Technologies, 2, 369-395(2013).
[27] Yu, Z. , Guo, J., Liu, L., Wang, et al. Statistical properties of dynamic speckles in application to laser focusing systems[J]. Applied Optics, 58, 3310-3316(2019).
[28] Dainty J C, Ennos A E, Françon M, et al. Laser Speckle and Related Phenomena[J]. Optica Acta International Journal of Optics, 23, 842-843(1976).
[29] Rabal H J, Arizaga R, Cap N L, et al. Numerical model for dynamic speckle: an approach using the movement of the scatterers[J]. Journal of Optics A:Pure and Applied Optics, 5, S381(2003).
[30] Qian W, Jiang M. Design and application of digital speckle patterns in digital image correlation method[J]. Chinese Journal of Liquid Crystals and Displays, 861-869(2020).
[31] [31] S. A. Akhmanov, Y. E. D’yakov A. S. Chirkin, Introduction to Statistical Radiophisics Optics[M]. 1981
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Dong-bo CHE, Ting-feng WANG, Shao ZHANG, Yue HAN, Yuan-yang LI. Statistical characteristics of multi-channel cooperative dynamic speckle metric[J]. Chinese Optics, 2022, 15(2): 286
Category: Original Article
Received: Jul. 31, 2021
Accepted: Nov. 3, 2021
Published Online: Mar. 28, 2022
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