Continuous variable quantum key distribution channel emulator for the SPOQC mission
arXiv:2602.23510 · doi:10.1364/OPTICAQ.578614
Abstract
In a free space optical (FSO) communication link from satellite to ground, the losses in the channel will be dynamic. Thus, the characterization of the FSO channel is of great importance and this can be emulated in the lab to evaluate the realistic performance of a satellite payload. In this work, we introduce a novel optical channel emulator capable of replicating these dynamics, especially for Low Earth Orbit based CubeSats. We demonstrate its ability to accurately emulate a satellite-to-ground optical communications channel under various atmospheric turbulence strengths, satellite trajectories, and optical ground station parameters at a given optical wavelength of interest. Our satellite channel emulator was designed to test and benchmark the performance of the continuous variable quantum key distribution payload for the Satellite Platform for Optical Quantum Communications mission - an in-orbit demonstrator for the UK's Quantum Communication Hub, to be launched in early 2026.
11 pages, 8 figures
References in corpus (13)
- Quantum repeaters: From quantum networks to the quantum internet
- Distributing Secret Keys with Quantum Continuous Variables: Principle, Security and Implementations
- Micius quantum experiments in space
- A comprehensive design and performance analysis of LEO satellite quantum communication
- Satellite Quantum Communications: Fundamental Bounds and Practical Security
- Feasibility of satellite-to-ground continuous-variable quantum key distribution
- CubeSat quantum communications mission
- Satellite-mediated quantum atmospheric links
- Atmospheric Scintillation in Astronomical Photometry
- AOtools -- a Python package for adaptive optics modelling and analysis
- Satellite-Based Quantum Key Distribution in the Presence of Bypass Channels
- The European Satellite-Based QKD System EAGLE-1
- A CubeSat platform for space based quantum key distribution