Analysis of communication characteristics of Airy vortex beams in turbulent plasma sheath

IF 2 3区 物理与天体物理 Q3 PHYSICS, FLUIDS & PLASMAS Physics of Plasmas Pub Date : 2024-08-02 DOI:10.1063/5.0194716
Tingwei Sun, Qingqing Deng, Wei Chen, Yong Bo, Lixia Yang, Lixin Guo
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Abstract

In this paper, a transmission model of power-exponential Airy vortex beams in plasma turbulence is established based on the random phase screen theory, and the information transmission characteristics of Airy vortex beams are compared under the OOK, BPSK, and DPSK modulation modes in free-space optical communication systems. Bit error rates (BERs) were calculated for different power indices (n), undulation variances (<Δn2>), transmission distances, and anisotropy parameters. In addition, the orbital angular momentum multiplexing of Airy vortex beams in the Line-of-Sight multiple input multiple output system under a plasma turbulence environment is investigated. The spectral efficiency (SE) is analyzed for different signal-to-noise ratio (SNR) and radii of the emitting surface, and the effects of the variation in the system's numerical aperture and the power exponent on the SE and the effective degrees of freedom in space are analyzed. The results show that the Airy beam has better turbulence resistance than the Laguerre–Gaussian beam. The power-exponential Airy beam has better transmission performance than the conventional Airy beam. By increasing the anisotropy parameter, the BER of the system decreases. When the <Δn2> and the transmission distance increase, the BER increases. Increasing the SNR, the radius of the launching surface and the choice of power-exponential Airy beams can improve the channel capacity. These findings provide a theoretical basis for the problem of optical signal propagation in plasma turbulence.
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湍流等离子鞘中空气涡旋束的通信特性分析
本文基于随机相屏理论,建立了等离子体湍流中功率指数Airy涡旋光束的传输模型,比较了Airy涡旋光束在自由空间光通信系统中OOK、BPSK和DPSK调制模式下的信息传输特性。计算了不同功率指数(n)、起伏方差(<Δn2>)、传输距离和各向异性参数下的比特误码率(BER)。此外,还研究了等离子体湍流环境下视距线多输入多输出系统中艾里涡旋光束的轨道角动量复用问题。分析了不同信噪比(SNR)和发射面半径下的光谱效率(SE),并分析了系统数值孔径和功率指数的变化对光谱效率和空间有效自由度的影响。结果表明,Airy 光束比 Laguerre-Gaussian 光束具有更好的抗湍流能力。功率指数 Airy 光束比传统 Airy 光束具有更好的传输性能。通过增加各向异性参数,系统的误码率会降低。当<Δn2>和传输距离增加时,误码率增加。提高信噪比、发射面半径和选择功率指数艾里波束都能提高信道容量。这些发现为等离子湍流中的光信号传播问题提供了理论依据。
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来源期刊
Physics of Plasmas
Physics of Plasmas 物理-物理:流体与等离子体
CiteScore
4.10
自引率
22.70%
发文量
653
审稿时长
2.5 months
期刊介绍: Physics of Plasmas (PoP), published by AIP Publishing in cooperation with the APS Division of Plasma Physics, is committed to the publication of original research in all areas of experimental and theoretical plasma physics. PoP publishes comprehensive and in-depth review manuscripts covering important areas of study and Special Topics highlighting new and cutting-edge developments in plasma physics. Every year a special issue publishes the invited and review papers from the most recent meeting of the APS Division of Plasma Physics. PoP covers a broad range of important research in this dynamic field, including: -Basic plasma phenomena, waves, instabilities -Nonlinear phenomena, turbulence, transport -Magnetically confined plasmas, heating, confinement -Inertially confined plasmas, high-energy density plasma science, warm dense matter -Ionospheric, solar-system, and astrophysical plasmas -Lasers, particle beams, accelerators, radiation generation -Radiation emission, absorption, and transport -Low-temperature plasmas, plasma applications, plasma sources, sheaths -Dusty plasmas
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