• Optics and Precision Engineering
  • Vol. 31, Issue 4, 459 (2023)
Xiangrui DUAN1, Aoxin FEI1, Zhiyi LU2, Yulang PENG1, and Zichun LE1,*
Author Affiliations
  • 1College of Science, Zhejiang University of Technology, Hangzhou30023, China
  • 2Hangzhou PuYu Technology Development Co.,Ltd, Hangzhou31111, China
  • show less
    DOI: 10.37188/OPE.20233104.0459 Cite this Article
    Xiangrui DUAN, Aoxin FEI, Zhiyi LU, Yulang PENG, Zichun LE. Tracked motion flexible diffractive optical elements suppressing laser speckle and its durability test[J]. Optics and Precision Engineering, 2023, 31(4): 459 Copy Citation Text show less
    References

    [1] H A CHEN, J W PAN, Z P YANG. Speckle reduction using deformable mirrors with diffusers in a laser pico-projector. Optics Express, 25, 18140-18151(2017).

    [2] C Y LIANG, W ZHANG, D W RUI et al. High-performance laser projection display illumination system based on a diffractive optical element. Applied Optics, 56, 2810-2815(2017).

    [3] A LAPCHUK, O PRYGUN, M L FU et al. Dispersion of speckle suppression efficiency for binary DOE structures: spectral domain and coherent matrix approaches. Optics Express, 25, 14575-14597(2017).

    [4] K AKŞIT, O ELDES, S VISWANATHAN et al. Portable 3D laser projector using mixed polarization technique. Journal of Display Technology, 8, 582-589(2012).

    [5] I GORCZYNSKA, J V MIGACZ, R J ZAWADZKI et al. Comparison of amplitude-decorrelation, speckle-variance and phase-variance OCT angiography methods for imaging the human retina and choroid. Biomedical Optics Express, 7, 911-942(2016).

    [6] J M SCHMITT, S H XIANG, K M YUNG. Speckle in optical coherence tomography. Journal of Biomedical Optics, 4, 95-105(1999).

    [7] Y LYSOV, V BARSKY, D URASOV et al. Microarray analyzer based on wide field fluorescent microscopy with laser illumination and a device for speckle suppression. Biomedical Optics Express, 8, 4798-4810(2017).

    [8] D MISHRA, S CHAUDHURY, M SARKAR et al. Edge probability and pixel relativity-based speckle reducing anisotropic diffusion. IEEE Transactions on Image Processing, 27, 649-664(2018).

    [9] E P MACKERROW, M J SCHMITT, D C THOMPSON. Effect of speckle on lidar pulse-pair ratio statistics. Applied Optics, 36, 8650-8669(1997).

    [10] A W STARK, E WONG, D WEIGEL et al. Subjective speckle suppression in laser-based stereo photogrammetry. Optical Engineering, 55, 121713(2016).

    [11] W GOODMANJ. Speckle Phenomena in Optics: Theory and Applications(2007).

    [12] Z M TONG, M N AKRAM, X Y CHEN. Speckle reduction using orthogonal arrays in laser projectors. Applied Optics, 49, 6425-6429(2010).

    [13] P F ZHAO, W H GAO. Illumination angle three-dimensional model for speckle noise suppression in laser projector. Journal of Display Technology, 12, 442-446(2016).

    [14] W H GAO, Z M TONG, V KARTASHOV et al. Replacing two-dimensional binary phase matrix by a pair of one-dimensional dynamic phase matrices for laser speckle reduction. Journal of Display Technology, 8, 291-295(2012).

    [15] C Y LIANG, W ZHANG, Z H WU et al. Beam shaping and speckle reduction in laser projection display systems using a vibrating diffractive optical element. Current Optics and Photonics, 1, 23-28(2017).

    [16] M J SUN, Z K LU. Speckle suppression with a rotating light pipe. Optical Engineering, 49(2010).

    [17] W F HSU, M H WENG. Compact holographic projection display using liquid-crystal-on-silicon spatial light modulator. Materials (Basel, Switzerland), 9, 768(2016).

    [18] Y S CHANG, W F HSU, K H HSU et al. Full-frame projection displays using a liquid-crystal-on-silicon spatial light modulator for beam shaping and speckle suppression. Applied Optics, 53, G214-G221(2014).

    [19] ZHAOMIN, TONG, ZHAOMIN, TONG. Principle, design and fabrication of a passive binary micro-mirror array (BMMA) for speckle reduction in grating light valve (GLV) based laser projection displays. Sensors and Actuators A: Physical, 210, 209-216(2014).

    [20] ZHAOMIN, TONG, ZHAOMIN, TONG. A ferroelectric liquid crystal spatial light modulator encoded with orthogonal arrays and its optimized design for laser speckle reduction. Optics and Lasers in Engineering, 90, 173-178(2017).

    [21] F PAN, L Z YANG, W XIAO. Coherent noise reduction in digital holographic microscopy by averaging multiple holograms recorded with a multimode laser. Optics Express, 25, 21815-21825(2017).

    [22] A LAPCHUK, G PASHKEVICH, O PRYGUN et al. Very efficient speckle suppression in the entire visible range by one two-sided diffractive optical element. Applied Optics, 56, 1481-1488(2017).

    [23] A LAPCHUK, I GORBOV, Z C LE et al. Experimental demonstration of a flexible DOE loop with wideband speckle suppression for laser pico-projectors. Optics Express, 26, 26188-26195(2018).

    [24] L L WANG, T TSCHUDI, T HALLDÓRSSON et al. Speckle reduction in laser projection systems by diffractive optical elements. Applied Optics, 37, 1770-1775(1998).

    [25] T K T TRAN, S SUBRAMANIAM, C P LE et al. Design, modeling, and characterization of a microelectromechanical diffuser device for laser speckle reduction. Journal of Microelectromechanical Systems, 23, 117-127(2014).

    [26] T K T TRAN, X Y CHEN et al. Speckle reduction in laser projection using a dynamic deformable mirror. Optics Express, 22, 11152-11166(2014).

    [27] A. LAPCHUK. Impact of aberrations on speckle suppression efficiency on moving a DOE inside the optical system. Displays, 43, 1-8(2016).

    [28] A LAPCHUK, G A PASHKEVICH, O V PRYGUN et al. Experiment evaluation of speckle suppression efficiency of 2D quasi-spiral M-sequence-based diffractive optical element. Applied Optics, 54, E47-E54(2015).

    [29] A LAPCHUK, V YURLOV, A KRYUCHYN et al. Impact of speed, direction, and accuracy of diffractive optical element shift on efficiency of speckle suppression. Applied Optics, 54, 4070-4076(2015).

    [30] A LAPCHUK, A KRYUCHYN, V PETROV et al. Optimal speckle suppression in laser projectors using a single two-dimensional Barker code diffractive optical element. Journal of the Optical Society of America A, 30, 227-232(2013).

    [31] W THOMAS, C MIDDLEBROOK. Non-moving Hadamard matrix diffusers for speckle reduction in laser pico-projectors. Journal of Modern Optics, 61, S74-S80(2014).

    [32] B REDDING, M A CHOMA, H CAO. Speckle-free laser imaging using random laser illumination. Nature Photonics, 6, 355-359(2012).

    [33] K V CHELLAPPAN, E ERDEN, H UREY. Laser-based displays: a review. Applied Optics, 49, F79-F98(2010).

    [34] J I TRISNADI. Hadamard speckle contrast reduction. Optics Letters, 29, 11-13(2004).

    [35] S AN, A LAPCHUK, V YURLOV et al. Speckle suppression in laser display using several partially coherent beams. Optics Express, 17, 92-103(2009).

    [36] H ISHIKAWA, A SHIBASE, W WENG et al. Reduction of laser speckle noise by using particle-dispersed liquid crystals. Molecular Crystals and Liquid Crystals, 646, 93-98(2017).

    [37] G VERSCHAFFELT, S ROELANDT, Y MEURET et al. Speckle disturbance limit in laser-based cinema projection systems. Scientific Reports, 5, 14105(2015).

    [38] Y H REN, J H SI, W J TAN et al. Speckle suppression of OKG imaging in highly turbid medium using SC-assisted fundamental frequency. IEEE Photonics Technology Letters, 29, 106-109(2017).

    Xiangrui DUAN, Aoxin FEI, Zhiyi LU, Yulang PENG, Zichun LE. Tracked motion flexible diffractive optical elements suppressing laser speckle and its durability test[J]. Optics and Precision Engineering, 2023, 31(4): 459
    Download Citation