Acta Photonica Sinica, Volume. 50, Issue 4, 66(2021)
Research on Influence of Aberration and Turbulence on Performance of 90° Space Optical Hybrid
[2] CHEN Weibiao, SUN Jianfeng, HOU Xia et al. 12 Gbps optical communication link between LEO satellite and ground station[C][C], 2017, 260-263(5).
[3] ZHOU Yu, SUN Jianfeng, YAN Aimin et al. Self-homodyne interferometric detection in 2×4 optical hybrid for free-space optical communication[C], 7814, 781412(2010).
[4] WAN Lingyu. Optical 90-deg hybrid of birefringent crystals for freely propagating laser beams[J]. Optical Engineering, 49, 125004(2010).
[8] Hang NAN, ZHANG Peng, TONG Shoufeng等. Performance analysis of free space coherent optical communication in atmosphere turbulence with tracking error[J]. Acta Photonica Sinica, 44, 56-61(2015).
[9] LI Xiaoyan, ZHAO Xiaohui, ZHANG Peng et al. BER performance of FSOC system with differential signaling over partially correlated atmospheric turbulence fading and partially correlated pointing errors[J]. Optics Communications, 457, 124545(2020).
[10] SALEM M, ROLLAND J P. Heterodyne efficiency of a detection system for partially coherent beams[J]. Journal of the Optical Society of America A: Optics Image Science & Vision, 27, 1111-1119(2010).
[11] Hang NAN, ZHANG Peng, TONG Shoufeng等. Analysis and optimization of splitting performance for space optical hybrid[J]. Optics and Precision Engineering, 25, 1748-1756(2017).
[12] CHAMBERS D M. Modeling heterodyne efficiency for coherent laser radar in the presence of aberrations[J]. Optics Express, 1, 60-67(1997).
[13] Hang NAN, ZHANG Peng, TONG Shoufeng等. Analysis of the effect of light spot size and ray axis deflection on heterodyne efficiency of space optical hybrid[J]. Infrared and Laser Engineering, 46, 198-205(2017).
[14] ZHANG Peng, QIN Kaiyu, HUANG Jian et al. Influences of hybrid phase-shift error on the performance of optical coherent receivers[J]. Optics Communications, 344, 113-119(2015).
[15] WANG Yongben, ZHAO Ningbo, YANG Zhiqun et al. Few-mode SDM receivers exploiting parallelism of free space[J]. IEEE Photonics Journal, 1-11(2019).
[16] WEN He, LIU Huiyuan, ZHANG Yuanhang et al. Mode demultiplexing hybrids for mode-division multiplexing coherent receivers[J]. Photonics Research, 7, 917-925(2019).
[17] XIANG Jinsong, PAN Lechun. Heterodyne efficiency and the effects of aberration for space coherent optical communication[J]. Opto-Electronic Engineering, 36, 53-57(2009).
[18] YANG Yufei, YAN Changxiang, HU Chunhui et al. Modified heterodyne efficiency for coherent laser communication in the presence of polarization aberrations[J]. Optics Express, 25, 7567-7591(2017).
[19] YANG Yufei, YAN Changxiang, HU Chunhui等. Polarization aberration analysis of coherent laser communication system[J]. Acta Optica Sinica, 36, 1106003(2016).
[20] DELAUTRE D, BREUGNOT S, LAUDE V. Measurement of the sensitivity of heterodyne detection to aberrations using a programmable liquid-crystal modulator[J]. Optics communications, 160, 61-65(1999).
[22] COHEN S C. Heterodyne detection: phase front alignment, beam spot size, and detector uniformity[J]. Applied Optics, 14, 1953-1959(1975).
[23] KONG Yingxiu, KE Xizheng, YANG Yuan. Influence research of atmospheric turbulence on space coherent optical communications[J]. Laser & Optoelectronics Progress, 52, 95-101(2015).
[25] WINZER P J, LEEB W R. Fiber coupling efficiency for random light and its applications to lidar[J]. Optics Letters, 23, 986-988(1998).
[26] LUO Wen, GENG Chao, LI Xinyang. Simulation and experimental study of single-mode fiber coupling efficiency affected by atmospheric turbulence aberration[J]. Acta Optica Sinica, 34, 46-52(2014).
[27] YANG Yuqiang, TAN Liying, MA Jing等. Influence of spherical aberration and coma on far-field behavior of signal beam in intersatellite optical communications[J]. Chinese Journal of Lasers, 35, 129-133(2008).
[28] WANG J Y, SILVA D E. Wave-front interpretation with Zernike polynomials[J]. Applied Optics, 19, 1510-1518(1980).
[29] MAEDA P Y. Zernike polynomials and their use in describing the wavefront aberrations of the human eye[J]. Applied Vision and Imaging Systems Psych, 221, 362(2003).
[30] THOMAS S. A simple turbulence simulator for adaptive optics[C], 5490, 766-773(2004).
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Xiyu GONG, Peng ZHANG, Xiaojie WU, Hang NAN, Daifang GUO, Chao WANG, Shoufeng TONG. Research on Influence of Aberration and Turbulence on Performance of 90° Space Optical Hybrid[J]. Acta Photonica Sinica, 2021, 50(4): 66
Category: Atmospheric and Oceanic Optics
Received: Nov. 16, 2020
Accepted: Jan. 19, 2021
Published Online: May. 11, 2021
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