闪烁
大气湍流
光学
光通信
湍流
物理
自由空间光通信
大气光学
链接(几何体)
光电子学
计算机科学
气象学
探测器
计算机网络
作者
Rong Wang,Bin Lan,Lijun Liu,Kaihe Zhang,Jiaxin Zhou,Xueying Li,Tianjun Dai,Hao Xian
出处
期刊:Photonics
[Multidisciplinary Digital Publishing Institute]
日期:2025-07-20
卷期号:12 (7): 739-739
标识
DOI:10.3390/photonics12070739
摘要
Free space optical communication (FSOC) systems operating in the space–atmosphere channel are susceptible to severe turbulence-induced scintillation, particularly in up-link configurations where the adaptive optics (AO) pre-correction becomes ineffective due to anisoplanatic constraints. This study presents a novel scintillation suppression strategy utilizing self-focusing optical pin-like beams (OPBs) with tailored phase modulation, combining theoretical derivation and numerical simulation. It is found that increasing the shape factor γ and modulation depth C elevates the average received power and reduces the scintillation index at the focal point. Meanwhile, quantitative evaluation of the five OPB configurations shows that the parameter set γ = 1.4 and C = 7 × 10−5 gives a peak scintillation suppression efficiency. It shows that turbulence induced scintillation is suppressed by 44% with the turbulence intensity D/r0 = 10, demonstrating exceptional effectiveness in up-link transmission. The findings demonstrate that OPB with optimized γ and C establish an approach for uplink FSOC, which is achieved through suppressed scintillation and stabilized power reception.
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