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Limits and Security of Free-Space Quantum Communications

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arxiv 2010.04168 v3 pith:5HSXH7R6 submitted 2020-10-08 quant-ph cond-mat.otherphysics.ao-phphysics.app-phphysics.optics

classification quant-phcond-mat.otherphysics.ao-phphysics.app-phphysics.optics
keywords free-spacequantumlimitstoolschannelcoherent-statecommunicationscomposable
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The study of free-space quantum communications requires tools from quantum information theory, optics and turbulence theory. Here we combine these tools to bound the ultimate rates for key and entanglement distribution through a free-space link, where the propagation of quantum systems is generally affected by diffraction, atmospheric extinction, turbulence, pointing errors, and background noise. Besides establishing ultimate limits, we also show that the composable secret-key rate achievable by a suitable (pilot-guided and post-selected) coherent-state protocol is sufficiently close to these limits, therefore showing the suitability of free-space channels for high-rate quantum key distribution. Our work provides analytical tools for assessing the composable finite-size security of coherent-state protocols in general conditions, from the standard assumption of a stable communication channel (as is typical in fiber-based connections) to the more challenging scenario of a fading channel (as is typical in free-space links).

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Topological State-Aware Simulation Framework for Inter-Satellite Twin-Field QKD Networks

    quant-ph 2026-08 conditional novelty 5.0 of 10

    A satellite twin-field QKD simulation with a topological data-analysis gate shows no rate advantage over the same gate without TDA, and the authors state the full composable-security proof remains incomplete.

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