Phase Noise in Real-World Twin-Field Quantum Key Distribution

Fuente: arXiv
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Autori principali: Bertaina, Gianluca, Clivati, Cecilia, Donadello, Simone, Liorni, Carlo, Meda, Alice, Virzì, Salvatore, Gramegna, Marco, Genovese, Marco, Levi, Filippo, Calonico, Davide, Dispenza, Massimiliano, Degiovanni, Ivo Pietro
Natura: Preprint
Pubblicazione: 2023
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author Bertaina, Gianluca
Clivati, Cecilia
Donadello, Simone
Liorni, Carlo
Meda, Alice
Virzì, Salvatore
Gramegna, Marco
Genovese, Marco
Levi, Filippo
Calonico, Davide
Dispenza, Massimiliano
Degiovanni, Ivo Pietro
author_facet Bertaina, Gianluca
Clivati, Cecilia
Donadello, Simone
Liorni, Carlo
Meda, Alice
Virzì, Salvatore
Gramegna, Marco
Genovese, Marco
Levi, Filippo
Calonico, Davide
Dispenza, Massimiliano
Degiovanni, Ivo Pietro
contents The impact of noise sources in real-world implementations of Twin-Field Quantum Key Distribution (TF-QKD) protocols is investigated, focusing on phase noise from photon sources and connecting fibers. This work emphasizes the role of laser quality, network topology, fiber length, arm balance, and detector performance in determining key rates. Remarkably, it reveals that the leading TF-QKD protocols are similarly affected by phase noise despite different mechanisms. This study demonstrates duty cycle improvements of over a factor of two through narrow-linewidth lasers and phase-control techniques, highlighting the potential synergy with high-precision time/frequency distribution services. Ultrastable lasers, evolving toward integration and miniaturization, offer promise for agile TF-QKD implementations on existing networks. Properly addressing phase noise and practical constraints allows for consistent key rate predictions, protocol selection, and layout design, crucial for establishing secure long-haul links for the Quantum Communication Infrastructures under development in several countries.
format Preprint
id arxiv_https___arxiv_org_abs_2310_08621
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Phase Noise in Real-World Twin-Field Quantum Key Distribution
Bertaina, Gianluca
Clivati, Cecilia
Donadello, Simone
Liorni, Carlo
Meda, Alice
Virzì, Salvatore
Gramegna, Marco
Genovese, Marco
Levi, Filippo
Calonico, Davide
Dispenza, Massimiliano
Degiovanni, Ivo Pietro
Quantum Physics
Optics
The impact of noise sources in real-world implementations of Twin-Field Quantum Key Distribution (TF-QKD) protocols is investigated, focusing on phase noise from photon sources and connecting fibers. This work emphasizes the role of laser quality, network topology, fiber length, arm balance, and detector performance in determining key rates. Remarkably, it reveals that the leading TF-QKD protocols are similarly affected by phase noise despite different mechanisms. This study demonstrates duty cycle improvements of over a factor of two through narrow-linewidth lasers and phase-control techniques, highlighting the potential synergy with high-precision time/frequency distribution services. Ultrastable lasers, evolving toward integration and miniaturization, offer promise for agile TF-QKD implementations on existing networks. Properly addressing phase noise and practical constraints allows for consistent key rate predictions, protocol selection, and layout design, crucial for establishing secure long-haul links for the Quantum Communication Infrastructures under development in several countries.
title Phase Noise in Real-World Twin-Field Quantum Key Distribution
topic Quantum Physics
Optics
url https://arxiv.org/abs/2310.08621