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Autori principali: Anka, Maron F, Rodríguez, John A. Mora, Pinto, Douglas F., Galvão, Lucas Q., Dias, Micael A., Tacla, Alexandre B.
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2512.01758
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author Anka, Maron F
Rodríguez, John A. Mora
Pinto, Douglas F.
Galvão, Lucas Q.
Dias, Micael A.
Tacla, Alexandre B.
author_facet Anka, Maron F
Rodríguez, John A. Mora
Pinto, Douglas F.
Galvão, Lucas Q.
Dias, Micael A.
Tacla, Alexandre B.
contents Continuous-variable quantum key distribution (CV-QKD) has emerged as a promising approach for secure quantum communication, offering advantages such as high key generation rates, compatibility with standard telecommunication infrastructure, and potential for integration on photonic chips. This review provides an accessible introduction to the theory of CV-QKD, aimed at researchers entering this rapidly developing field. We focus on fundamental concepts, key protocols, and security analysis essential for understanding CV-QKD systems, with a special emphasis on prepare-and-measure protocols using coherent states under asymptotic security conditions. We explain their equivalence to entanglement-based protocols and detail the security proof framework against collective attacks, encompassing both Gaussian and discrete modulation schemes. We also briefly address more advanced topics, including measurement-device-independent CV-QKD and finite-size security analysis. This work is motivated by Brazil's growing investment in quantum communication technologies. By presenting a clear learning path from basic concepts to advanced topics, this work aims to equip newcomers with the essential tools to engage with current research in CV-QKD, thereby supporting the training of a new generation of researchers in this strategic field.
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spellingShingle An introductory review of the theory of continuous-variable quantum key distribution: Fundamentals, protocols, and security
Anka, Maron F
Rodríguez, John A. Mora
Pinto, Douglas F.
Galvão, Lucas Q.
Dias, Micael A.
Tacla, Alexandre B.
Quantum Physics
Continuous-variable quantum key distribution (CV-QKD) has emerged as a promising approach for secure quantum communication, offering advantages such as high key generation rates, compatibility with standard telecommunication infrastructure, and potential for integration on photonic chips. This review provides an accessible introduction to the theory of CV-QKD, aimed at researchers entering this rapidly developing field. We focus on fundamental concepts, key protocols, and security analysis essential for understanding CV-QKD systems, with a special emphasis on prepare-and-measure protocols using coherent states under asymptotic security conditions. We explain their equivalence to entanglement-based protocols and detail the security proof framework against collective attacks, encompassing both Gaussian and discrete modulation schemes. We also briefly address more advanced topics, including measurement-device-independent CV-QKD and finite-size security analysis. This work is motivated by Brazil's growing investment in quantum communication technologies. By presenting a clear learning path from basic concepts to advanced topics, this work aims to equip newcomers with the essential tools to engage with current research in CV-QKD, thereby supporting the training of a new generation of researchers in this strategic field.
title An introductory review of the theory of continuous-variable quantum key distribution: Fundamentals, protocols, and security
topic Quantum Physics
url https://arxiv.org/abs/2512.01758