Free Space to Few-Mode Fiber Coupling Efficiency improvement with Adaptive Optics under Atmospheric Turbulence
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OSA
Reference9 articles.
1. Overview and results of the Lunar Laser Communication Demonstration
2. Optical networks, last mile access and applications
3. Free-space to single-mode collection efficiency enhancement using photonic lanterns
4. Long distance transmission in few-mode fibers
5. Space-division multiplexing: the next frontier in optical communication
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