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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Multimode Laser Beam Scintillations in Non-Kolmogorov Turbulence
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Multimode Laser Beam Scintillations in Non-Kolmogorov Turbulence

机译:非Kolmogorov湍流中的多模激光闪烁

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Employing the Rytov solution, the scintillation index at the origin of the receiver plane is evaluated in non-Kolmogorov weak atmospheric turbulence when multimode laser incidence is used. The solution presented can be used when the multimode is composed of even modes. The novelty of this work lies in the theoretical combination of multimode laser beam excitation and non-Kolmogorov turbulence in the scintillation evaluations, which is not known both theoretically and experimentally. The study involves mathematical rigor but no experimental results. Being valid for any power law exponent of the non-Kolmogorov turbulence, the scintillations of the multimode beams are found to be smaller than the scintillation index of a single Gaussian beam. For the multimode laser beam excitation, the scintillation index is smaller at smaller power law exponent values. If the multimode content is formed by beams with larger mode numbers, the scintillations decrease for any non-Kolmogorov realization. When large sized beams are used in the multimode, the scintillations increase as compared to small sized content, and the scintillations become almost the same as the Gaussian beam scintillations. Comparing the multimode structures that have the same number of beams, the ones with higher order modes yield smaller scintillations, and for such multimode structures, very similar scintillation index behaviour versus the power law exponent can be obtained by varying the amplitudes of the modes composing the multimode. The main contribution of this paper is the formulation and evaluation of the scintillation noise in order to understand whether the use of multimode laser excitation will improve the link performance of optical wireless communication systems operating in a non-Kolmogorov atmosphere.
机译:使用Rytov解决方案,当使用多模激光入射时,在非Kolmogorov弱大气湍流中评估接收器平面原点的闪烁指数。当多模式由偶数模式组成时,可以使用提出的解决方案。这项工作的新颖之处在于在闪烁评估中将多模激光束激发和非Kolmogorov湍流理论结合在一起,这在理论和实验上都是未知的。该研究涉及严格的数学原理,但没有实验结果。对于非Kolmogorov湍流的任何幂律指数有效,发现多模光束的闪烁小于单个高斯光束的闪烁指数。对于多模激光束激励,闪烁指数在较小的幂律指数值下较小。如果多模内容由具有较大模数的光束形成,则对于任何非Kolmogorov实现,闪烁都会减少。当在多模中使用大尺寸光束时,与小尺寸内容相比,闪烁增加,并且闪烁变得与高斯光束闪烁几乎相同。比较具有相同束数的多模结构,具有较高阶模的束会产生较小的闪烁,对于这种多模结构,可以通过改变组成光束的模的幅度来获得与幂律指数非常相似的闪烁指数行为。多模式。本文的主要贡献是闪烁噪声的公式化和评估,以了解使用多模激光激发是否会改善在非Kolmogorov气氛中运行的光学无线通信系统的链路性能。

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