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Frequency-bin entanglement-based Quantum Key Distribution

delete2025-04-06
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OA
AI
N
Noemi Tagliavacche
M
Massimo Borghi *
G
Giulia Guarda
D
Domenico Ribezzo
M
Marco Liscidini
D
Davide Bacco
M
Mattéo Galli
D
Daniele Bajoni
DOI:10.1038/s41534-025-00991-5delete
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Abstract

Abstract

En 中文
Entanglement is an essential ingredient in many quantum communication protocols. In particular, entanglement can be exploited in quantum key distribution (QKD) to generate two correlated random bit strings whose randomness is guaranteed by the nonlocal property of quantum mechanics. Most of QKD protocols tested to date rely on polarization and/or time-bin encoding. Despite compatibility with existing fiber-optic infrastructure and ease of manipulation with standard components, frequency-bin QKD have not yet been fully explored. Here we report a demonstration of entanglement-based QKD using frequency-bin encoding. We implement the BBM92 protocol using photon pairs generated by two independent, high-finesse, ring resonators on a silicon photonic chip. We perform a passive basis selection scheme and simultaneously record sixteen projective measurements. A key finding is that frequency-bin encoding is sensitive to the random phase noise induced by thermal fluctuations of the environment. To correct for this effect, we developed a real-time adaptive phase rotation of the measurement basis, achieving stable transmission over a 26 km fiber spool with a secure key rate >= 4.5 bit/s. Our work introduces a new degree of freedom for the realization of entangled based QKD protocols in telecom networks.

Journal

npj Quantum Information cover
npj Quantum Information
IF:
8.3
Papers:
1.4K
Citations:
8.1K

Organization

U
Univ Florence
Scholars:
1.5K
Papers: 716
Citations: 204
E
European Lab Nonlinear Spect Lens
Scholars:
3
Papers: 3
Citations: 0
U
Univ Pavia
Scholars:
890
Papers: 459
Citations: 138
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