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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Evolution properties of the orbital angular momentum spectrum of twisted Gaussian Schell-model beams in turbulent atmosphere
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Evolution properties of the orbital angular momentum spectrum of twisted Gaussian Schell-model beams in turbulent atmosphere

机译:湍流气氛中扭曲高斯舒尔模型梁轨道角动量谱的演化特性

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We derive the analytical formula of the energy weight of each orbital angular momentum (OAM) mode of twisted Gaussian Schell-model (TGSM) beams propagating in weak turbulent atmosphere. The evolution of its OAM spectrum is studied by numerical calculation. Our results show that the OAM spectrum of a TGSM beam changes with the beam propagating in turbulent atmosphere, which is completely different from that of the TGSM beam propagating in free space. Furthermore, influences of the source parameters and the turbulence parameters on the OAM spectrum of a TGSM beam in turbulent atmosphere are analyzed. It is found that the source parameters and turbulence parameters, such as twist factor, coherence length, beam waist size, and structure constant, have a significant influence on the OAM spectrum, but the value of the wavelength and inner scale have little influence. Increasing the beam waist size or decreasing the coherence length would lead to the OAM spectrum broadened in the source plane, but would be robust for the OAM modes of the TGSM beam in the turbulent atmosphere. It is dear that the bigger the value of the twist factor, the more asymmetric the OAM mode of the TGSM beam is, and the better mode distribution can be maintained when it propagates in turbulent atmosphere. Our results have potential applications in reducing the error rate of free-space optical communication and detecting the atmospheric parameters. (C) 2019 Optical Society of America
机译:我们得出了在弱湍流气氛中传播的扭曲高斯舒尔模型(TGSM)光束的每个轨道角动量(OAM)模式的能量重量的分析公式。通过数值计算研究了其OAM谱的演变。我们的结果表明,TGSM光束的OAM光谱随着湍流大气中传播的光束而变化,这与在自由空间中传播的TGSM波束的光束完全不同。此外,分析了源参数和湍流参数对TGSM波束在湍流气氛中的OAM频谱上的影响。结果发现,源参数和湍流参数,如扭曲因子,相干长度,梁腰围尺寸和结构常数,对OAM光谱产生显着影响,但波长和内尺度的值几乎没有影响。增加光束腰部尺寸或减小相干长度将导致源平面宽泛扩展的OAM光谱,但是对于湍流气氛中的TGSM光束的OAM模式将是鲁棒的。亲爱的扭曲因子的值越大,TGSM光束的OAM模式越多,并且在湍流气氛中传播时,可以保持更好的模式分布。我们的结果具有降低自由空间光通信的误差和检测大气参数的潜在应用。 (c)2019年光学学会

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