Optical Communication Technology, Volume. 48, Issue 5, 80(2024)

Study on the transmission characteristics of anomalous vortex beams in absorptive ocean turbulence

LIU Tao1...2,3, WU Tong1, ZHAO Shuo1, LI Bin1, ZHANG Rongxiang4, and LIU Chenxia1,23 |Show fewer author(s)
Author Affiliations
  • 1Department of Electronic and Communication Engineering, North China Electric Power University, Baoding Hebei 071003, China
  • 2Hebei Key Laboratory of Power Internet of Things Technology, North China Electric Power University, Baoding Hebei 071003, China
  • 3Baoding Key Laboratory of Optical Fiber Sensing and Optical Communication Technology, North China Electric Power University, Baoding Hebei 071003, China
  • 4College of Physics Science and Technology, Hebei University, Baoding Hebei 071002, China
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    In order to analyze the impact of the absorption and turbulence characteristics of seawater on the transmission performance of vortex beams, an analytical expression for the detection probability of the orbital angular momentum (OAM) mode of anomalous vortex beams is derived, taking into account both the absorption and turbulence effects of seawater. The influence of absorbing turbulent seawater on the spiral phase spectrum, detection probability, and crosstalk probability of anomalous vortex beams is discussed in detail. The simulation results indicate that the absorption effect of seawater cannot be ignored, as it can lead to a decrease in detection probability. Absorbing ocean turbulence can lead to the expansion of the spiral phase spectrum, and as the number of OAM modes increases, the degree of expansion of the spiral phase spectrum becomes greater. As the temperature variance dissipation rate, temperature salinity contribution ratio, and turbulence energy dissipation rate of ocean turbulence decrease, the detection probability of OAM mode increases and the crosstalk probability decreases.

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    LIU Tao, WU Tong, ZHAO Shuo, LI Bin, ZHANG Rongxiang, LIU Chenxia. Study on the transmission characteristics of anomalous vortex beams in absorptive ocean turbulence[J]. Optical Communication Technology, 2024, 48(5): 80

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    Paper Information

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    Received: Apr. 9, 2024

    Accepted: Jan. 16, 2025

    Published Online: Jan. 16, 2025

    The Author Email:

    DOI:10.13921/j.cnki.issn1002-5561.2024.05.013

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