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Propagation of Laguerre-Gaussian and I_m Bessel beams through atmospheric turbulence: A computational study

机译:LAGUERRE-GAUSSIAN和I_M BESSEL光束通过大气湍流传播:计算研究

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The study of light carrying complex phase profiles, specifically orbital angular momentum (OAM), has been of interest for its use in free-space optical communications and remote sensing systems. Each of these applications requires a beam to propagate through the atmosphere, where optical turbulence is the main distorter of the beam. In this computational study, coherent Laguerre-Gaussian (LG) beams and partially coherent I_m Bessel beams are propagated through atmospheric turbulence. The LG beams are propagated through turbulence using a split-step method for solving the Fresnel diffraction integral. Whereas for the the I_m Bessel beams, the coherent mode representation is used, where each eigenmode is individually propagated through turbulence. The split-step algorithm is then modified to simulate optical turbulence by the use of phase screens. Beam metrics, in the form of intensity, scintillation, spot size, and OAM spectrum, are then calculated over a number of turbulence realizations. Three turbulence regimes are simulated that include the weak, moderate, and strong turbulence regimes along with two different initial beam sizes. The I_m Bessel beam is simulated using three values of overall coherence ξ. The results for the metrics are plotted against propagation distance and OAM mode l. The resulting beam metrics show a strong dependence on turbulence strength, a weak dependence on OAM mode due to LG modes expanding with an extra prefactor of (l+1)~(1/2), and no strong dependence on the overall coherence ξ.
机译:对携带复杂相形曲线,特别是轨道角动量(OAM)的光的研究对其在自由空间光通信和遥感系统中使用的感兴趣。这些应用中的每一个都需要光束通过气氛传播,其中光学湍流是光束的主要失真。在该计算研究中,连贯的Laguerre-Gaussian(LG)光束和部分相干的I_M贝塞尔梁通过大气湍流传播。使用用于求解菲涅耳衍射积分的分流步骤方法,通过湍流传播LG梁。虽然对于I_M贝塞尔光束,但使用相干模式表示,其中每个EigenMode通过湍流单独传播。然后修改分流阶段算法以通过使用相屏来模拟光学湍流。然后以强度,闪烁,光斑尺寸和OAM光谱的形式进行光束度量,然后在许多湍流实现上计算。模拟三个湍流制度,包括弱,中等和强烈的湍流制度以及两种不同的初始束尺寸。使用三个整体相干值ξ模拟I_M贝塞尔光束。测量度量的结果绘制反对传播距离和OAM模式L.由此产生的光束度量显示出对湍流强度的强烈依赖,由于LG模式与(L + 1)〜(1/2)的额外集体扩展而导致OAM模式的弱依赖性,并且没有对整体相干性的强烈依赖性ξ。

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