Wang Minghao, Kane Tim, Yuan Xiuhua, Zeng Yan'an, Alharbi Omar
Opt Express. 2018 Nov 26;26(24):32130-32144. doi: 10.1364/OE.26.032130.
The convex partially coherent beam (CPCB) is a special type of nonuniformly correlated beam with a convex-shaped complex degree of coherence (DoC) distributions. Previously our research has illustrated the potential of CPCBs with super-Gaussian DoCs in free-space optical communications (FSOC), mainly manifested as self-focusing which can be transferred into extra scintillation reduction and SNR gain. In this study, the effects of the DoC transition slopes are analyzed and more details about the turbulence propagation of CPCBs with super-Gaussian shaped DoC are revealed. By means of wave optics simulation, the longitudinal intensity evolution of the CPCB is explored, showing that the DoC slope has a profound influence on the self-focusing features such as the focusing plane and the peak intensity. Aperture scintillation and mean SNR at the receiver end of some short-range vertical turbulent links are numerically computed. The obtained results show that, with CPCBs, an ~2 dB SNR gain can be achieved as compared to conventional Gaussian Schell-modal (GSM) beams. However, CPCBs are preferred only in shorter links, which is found to be relevant to the power-in-the-bucket of the receiving aperture. Furthermore, the impacts of the ratio of the source coherence time to the detector integration time are investigated, implying that the CPCB is less susceptible than the GSM. We have also examined the off-axis scintillation of the CPCB. Due to its convex-shaped DoC, the CPCB has significantly reduced off-axis scintillation, which can be beneficial in the presence of pointing errors.
凸面部分相干光束(CPCB)是一种特殊类型的非均匀相关光束,其相干度(DoC)分布呈凸形。此前我们的研究已经说明了具有超高斯DoC的CPCB在自由空间光通信(FSOC)中的潜力,主要表现为自聚焦,这可以转化为额外的闪烁减少和信噪比增益。在本研究中,分析了DoC过渡斜率的影响,并揭示了具有超高斯形状DoC的CPCB在湍流中传播的更多细节。通过波动光学模拟,研究了CPCB的纵向强度演变,结果表明DoC斜率对诸如聚焦平面和峰值强度等自聚焦特性有深远影响。数值计算了一些短距离垂直湍流链路接收端的孔径闪烁和平均信噪比。所得结果表明,与传统高斯谢尔模(GSM)光束相比,使用CPCB可实现约2 dB的信噪比增益。然而,CPCB仅在较短链路中更具优势,这与接收孔径的桶中功率有关。此外,研究了源相干时间与探测器积分时间之比的影响,这意味着CPCB比GSM更不易受影响。我们还研究了CPCB的离轴闪烁。由于其凸形的DoC,CPCB的离轴闪烁显著降低,这在存在指向误差的情况下可能是有益的。