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Synchronization and coexistence in quantum networks

  • Ivan A. Burenkov
  • , Alexandra Semionov
  • , Hala
  • , Thomas Gerrits
  • , Anouar Rahmouni
  • , DJ Anand
  • , Ya-Shian Li-Baboud
  • , Oliver Slattery
  • , Abdella Battou
  • , Sergey V. Polyakov

Research output: Contribution to journalArticlepeer-review

57 Scopus citations

Abstract

We investigate the coexistence of clock synchronization protocols with quantum signals in a common single-mode optical fiber. By measuring optical noise between 1500x00A0;nm to 1620 nm we demonstrate a potential for up to 100 quantum, 100 GHz wide channels coexisting with the classical synchronization signals. Both ``White Rabbit'' and pulsed laser-based synchronization protocols were characterized and compared. We establish a theoretical limit of the fiber link length for coexisting quantum and classical channels. The maximal fiber length is below approximately 100 km for off-the-shelf optical transceivers and can be significantly improved by taking advantage of quantum receivers.
Original languageEnglish
Pages (from-to)11431-11446
Number of pages16
JournalOpt. Express
Volume31
Issue number7
Early online dateMar 2023
DOIs
StatePublished - Mar 1 2023
Externally publishedYes

Keywords

  • Entanglement distribution
  • Optical transceivers
  • Quantum key distribution
  • Quantum teleportation
  • Single mode fibers
  • Wavelength division multiplexing

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