Chinese Journal of Lasers, Volume. 50, Issue 19, 1905002(2023)
Complex Coherence Modulation of Laser Field Based on Random Microlens Array
[1] Ma Q L, Xu C Q, Kitai A et al. Speckle reduction by optimized multimode fiber combined with dielectric elastomer actuator and lightpipe homogenizer[J]. Journal of Display Technology, 12, 1162-1167(2016).
[2] Akram M N, Chen X Y. Speckle reduction methods in laser-based picture projectors[J]. Optical Review, 23, 108-120(2016).
[3] Guo J Y, Zhou X, Li D et al. A hybrid structured-light measurement using a laser projector[J]. Proceedings of SPIE, 10329, 103294X(2017).
[4] Xu M F, Wang H Q, Gao W H et al. Parameters analysis for speckle suppression in laser projection systems[J]. Chinese Journal of Lasers, 42, 0602011(2015).
[5] Wang F, Liu X L, Cai Y J. Propagation of partially coherent beam in turbulent atmosphere: a review (invited review)[J]. Progress in Electromagnetics Research, 150, 123-143(2015).
[6] Yuan Y S, Liu X L, Wang F et al. Scintillation index of a multi-Gaussian Schell-model beam in turbulent atmosphere[J]. Optics Communications, 305, 57-65(2013).
[7] Wang F, Cai Y J. Second-order statistics of a twisted Gaussian Schell-model beam in turbulent atmosphere[J]. Optics Express, 18, 24661-24672(2010).
[8] Wu H, Wang C L, Gong W L. Ghost imaging via sparse structured illumination source[J]. Optics Express, 26, 4183-4191(2018).
[9] Dou L Y, Gao L, Song X B. Non-local correlation interference with pseudo-thermal light[J]. Optics Communications, 381, 323-326(2016).
[10] Wang K, Li Q, Lin H Z et al. Ghost imaging with spatial light modulator based on genetic algorithm[J]. Acta Optica Sinica, 36, 0227002(2016).
[11] Nixon M, Redding B, Friesem A A et al. Efficient method for controlling the spatial coherence of a laser[J]. Optics Letters, 38, 3858-3861(2013).
[12] Chriki R, Nixon M, Pal V et al. Manipulating the spatial coherence of a laser source[J]. Optics Express, 23, 12989-12997(2015).
[13] Nagata K I, Umebara T. Spatial correlation of Gaussian beam in moving ground glass[J]. Japanese Journal of Applied Physics, 12, 694-705(1973).
[14] Wang F, Cai Y J. Experimental generation of a partially coherent flat-topped beam[J]. Optics Letters, 33, 1795-1797(2008).
[15] Liang C Y, Zhang W, Rui D W et al. Beam homogenized shaping and speckle suppression in laser projection display system using liquid crystal on silicon[J]. Chinese Journal of Lasers, 43, 1201001(2016).
[16] Sun M J, Lu Z K. Novel speckle suppression in LCoS based laser projection[J]. Proceedings of SPIE, 7506, 75060J(2009).
[17] Akram M N, Tong Z M, Ouyang G M et al. Laser speckle reduction due to spatial and angular diversity introduced by fast scanning micromirror[J]. Applied Optics, 49, 3297-3304(2010).
[18] Fu H Y, Liu W Q, Wei Z L et al. Speckle reduction using rotating random micro-lens array in laser display[J]. Chinese Journal of Liquid Crystals and Displays, 30, 359-364(2015).
[19] Fu H Y, Liu Y Y. High uniformity laser illumination system with small aperture[J]. Chinese Journal of Liquid Crystals and Displays, 33, 548-554(2018).
[20] Kirner R, Vetter A, Opalevs D et al. Mask-aligner lithography using a continuous-wave diode laser frequency-quadrupled to 193 nm[J]. Optics Express, 26, 730-743(2018).
[21] Wolf E A. Optics in terms of observable quantities[J]. Il Nuovo Cimento, 12, 884-888(1954).
[22] Dong L. Speckle suppression in laser three-dimension display and speckle measurement[D](2013).
Get Citation
Copy Citation Text
Xueqiang Li, Fang Wu, Shuang Gong, Yang Bu. Complex Coherence Modulation of Laser Field Based on Random Microlens Array[J]. Chinese Journal of Lasers, 2023, 50(19): 1905002
Category: Beam transmission and control
Received: Dec. 16, 2022
Accepted: Mar. 15, 2023
Published Online: Oct. 24, 2023
The Author Email: Bu Yang (buyang@siom.ac.cn)