In quantum communication protocols, the use of hybrid devices, giving access to both particle- and wave-like properties of light, could open new perspectives for novel encoding procedures that merge the properties of discrete and continuous variables. In our work, we explore the context of continuous-variable quantum key distribution with binary modulated coherent states over a pure-loss channel with a Silicon-photomultiplier-based hybrid receiver. In particular, we investigate how the key generation rate behaves as a function of the losses affecting the coherent states and the number of data used to send them both in the case of individual and collective attacks. The obtained outcomes encourage the further exploitation of this hybrid receiver in extended networks.

Implementation of a hybrid SiPM receiver for applications to continuous-variable quantum key distribution with binary modulation / A. Mazzocchi, M.N.N.. - In: INTERNATIONAL JOURNAL OF QUANTUM INFORMATION. - ISSN 0219-7499. - 24:3(2026 Apr), pp. 2540011.1-2540011.12. [10.1142/S0219749925400118]

Implementation of a hybrid SiPM receiver for applications to continuous-variable quantum key distribution with binary modulation

M.N. Notarnicola
Secondo
;
S. Olivares
Penultimo
;
2026

Abstract

In quantum communication protocols, the use of hybrid devices, giving access to both particle- and wave-like properties of light, could open new perspectives for novel encoding procedures that merge the properties of discrete and continuous variables. In our work, we explore the context of continuous-variable quantum key distribution with binary modulated coherent states over a pure-loss channel with a Silicon-photomultiplier-based hybrid receiver. In particular, we investigate how the key generation rate behaves as a function of the losses affecting the coherent states and the number of data used to send them both in the case of individual and collective attacks. The obtained outcomes encourage the further exploitation of this hybrid receiver in extended networks.
Mutual information; photon-number-resolving detectors; quantum key distribution;
Settore PHYS-03/A - Fisica sperimentale della materia e applicazioni
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
apr-2026
dic-2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1256095
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