光学
物理
空格(标点符号)
物理光学
折射率
几何光学
自由空间
激光束
分束器
角谱法
信号处理
光谱密度
计算机模拟
大气光学
光束
空间频率
耦合模理论
图像处理
噪音(视频)
光散射
自由空间光通信
衍射
反射(计算机编程)
脉冲压缩
菲涅耳衍射
光谱(功能分析)
作者
Chaoxu Chen,Haoyu Zhang,Yuan Wei,Fang Dong,Junwen Zhang,Nan Chi,Haiwen Cai,Wei Chu,Jianyang Shi
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2026-06-30
卷期号:51 (15): 4256-4256
摘要
We propose a continuous-scaling angular spectrum (CSAS) method for efficient long-distance free-space optical (FSO) propagation simulation. By combining multistep propagation with continuously updated sampling intervals, the method maintains a constant sampling size and avoids the large computational grids required by conventional angular spectrum (AS) approaches. Under an aperture-limited framework, only the spatial-frequency components contributing to the received optical power (ROP) are preserved, and a low-frequency energy ratio is introduced to quantify the relevant spectral content. Numerical simulations and a 4.3 km outdoor FSO experiment demonstrate that CSAS provides consistent ROP estimation compared with conventional AS, while significantly reducing computational cost. At a propagation distance of 4.3 km, the proposed method achieves approximately 98% reduction in computation time without degrading power estimation performance. The results indicate that CSAS offers an efficient propagation framework for long-distance FSO systems, particularly for scenarios involving multi-step turbulence modeling and system-level evaluation.
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