Infrared and Laser Engineering, Volume. 52, Issue 9, 20220814(2023)
Research on wavelength conversion system performance of high-power wireless optical communication
[2] Yi Yang, Yan Liu, Yilong Wang, . Influence of underwater composite channel on performance of GMSK wireless optical communication system. Infrared and Laser Engineering, 51, 20210622(2022).
[3] Xiangzi Chen, Rong Weng, Hongmei Pei. Attenuation characteristics of laser in seawater with different temperature and salinity. Journal of Hainan Tropical Ocean University, 26, 93-100(2019).
[5] A Al-halafi, B Shihada. UHD video transmission over bidirectional underwater wireless optical communication. IEEE Photonics Journal, 10, 1-14(2018).
[8] M A Khalighi, M Uysal. Survey on free space optical communication: A communication theory perspective. IEEE Communications Surveys & Tutorials, 16, 2231-2258(2014).
[9] [9] Lai J Y, Hsu C S, Hsu C W, et al. Single pass 7 watts continuous wave 532 nm generation by focusing optimized second harmonic generation in MgO: PPLN[C]Nonlinear Frequency Generation Conversion: Materials Devices XVIII, 2019, 10902: 1090205.
[13] [13] Yang Y, Fan L, He F, et al. Longdistance underwater optical wireless communication with PPLN wavelength conversion[C]24th National Laser Conference & Fifteenth National Conference on Laser Technology Optoelectronics, 2020, 11717: 117172J.
[14] Mei Sang, Ting Xue, Jian Yu, . Temperature dependence of the second harmonic generation in periodically poled LiNbO3crystal. Journal of Optoelectronics · Laser, 13, 343-348(2002).
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Yi Yang, Lirong Fan, Xiaobo Wang, Fengtao He, Zuoliang Duan, Zhanwang Min. Research on wavelength conversion system performance of high-power wireless optical communication[J]. Infrared and Laser Engineering, 2023, 52(9): 20220814
Category: Optical communication and sensing
Received: Nov. 8, 2022
Accepted: --
Published Online: Oct. 23, 2023
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