A real-time optical ground receiver for photon starved environments

Author:

Downey Jennifer N.,Tedder Sarah A.,Vyhnalek Brian E.,Lantz Nicholas C.,Marsden Michael A.,Simon William P.,Bizon Thomas P.,Zeleznikar Daniel J.

Publisher

SPIE

Reference17 articles.

1. “Optical communications coding and synchronization recommended standard,” CCSDS 142.0-B-1 Blue Book (2019).

2. Optical communications systems for NASA’s human space flight missions;Seas,2019

3. Deep Space Optical Communications;Biswas,2018

4. Fiber-detector subsystem loss comparison for a ground-based photon-counting optical receiver;Vyhnalek,2023

5. Single-mode fiber and few-mode fiber photonic lanterns performance evaluated for use in a scalable real-time photon counting ground receiver;Tedder,2019

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1. Performance of a real-time photon counting optical receiver in the presence of emulated channel fading;Free-Space Laser Communications XXXVI;2024-03-12

2. Field-programmable gate array implementation of a single photon-counting receive modem;Free-Space Laser Communications XXXVI;2024-03-12

3. Deep space communication with the ANU optical communications ground station;Free-Space Laser Communications XXXVI;2024-03-12

4. Instrumentation for the Mount Stromlo Optical Communications Ground Station;2023 IEEE International Conference on Space Optical Systems and Applications (ICSOS);2023-10-11

5. Statistical analysis of fading power vectors for real-time atmospheric channel emulation;Free-Space Laser Communications XXXV;2023-03-15

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