Quantum Key Distribution in the Iberian Peninsula

Fuente: arXiv
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Main Authors: Tubío, Vicky Domínguez, Aldecocea, Mario Badás, Bakker, David L., Amaral, Gustavo C., López, Diego, Borregaard, Johannes
Format: Preprint
Published: 2025
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author Tubío, Vicky Domínguez
Aldecocea, Mario Badás
Bakker, David L.
Amaral, Gustavo C.
López, Diego
Borregaard, Johannes
author_facet Tubío, Vicky Domínguez
Aldecocea, Mario Badás
Bakker, David L.
Amaral, Gustavo C.
López, Diego
Borregaard, Johannes
contents A promising use of quantum networking is quantum key distribution (QKD), which can provide information-theoretic security unattainable by classical means. While optical fiber-based QKD networks suffer from exponential loss, satellite-assisted quantum communication offers a scalable solution for long-distance secure key exchange. In this work, we propose and evaluate a satellite-based QKD setup covering the Iberian Peninsula, linking Madrid with Barcelona, Bilbao, and Lisbon. Our proposed setup uses a Low-Earth-Orbit (LEO) state-of-the-art satellite equipped with a spontaneous parametric down-conversion (SPDC) source to distribute entangled photon pairs to ground stations. Considering vibrations in the satellite, we optimize the beam waist to enhance the transmission probability and improve the secret key rate (SKR). Our results show that key rates sufficient for real-world applications, such as secure communication between hospitals, using hybrid classical-quantum protocols are feasible with existing protocols. Our results highlight the viability of near-term satellite-based QKD networks for national-scale secure communications.
format Preprint
id arxiv_https___arxiv_org_abs_2510_12951
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Key Distribution in the Iberian Peninsula
Tubío, Vicky Domínguez
Aldecocea, Mario Badás
Bakker, David L.
Amaral, Gustavo C.
López, Diego
Borregaard, Johannes
Quantum Physics
Optics
A promising use of quantum networking is quantum key distribution (QKD), which can provide information-theoretic security unattainable by classical means. While optical fiber-based QKD networks suffer from exponential loss, satellite-assisted quantum communication offers a scalable solution for long-distance secure key exchange. In this work, we propose and evaluate a satellite-based QKD setup covering the Iberian Peninsula, linking Madrid with Barcelona, Bilbao, and Lisbon. Our proposed setup uses a Low-Earth-Orbit (LEO) state-of-the-art satellite equipped with a spontaneous parametric down-conversion (SPDC) source to distribute entangled photon pairs to ground stations. Considering vibrations in the satellite, we optimize the beam waist to enhance the transmission probability and improve the secret key rate (SKR). Our results show that key rates sufficient for real-world applications, such as secure communication between hospitals, using hybrid classical-quantum protocols are feasible with existing protocols. Our results highlight the viability of near-term satellite-based QKD networks for national-scale secure communications.
title Quantum Key Distribution in the Iberian Peninsula
topic Quantum Physics
Optics
url https://arxiv.org/abs/2510.12951