4.6 Article

Field test of a continuous-variable quantum key distribution prototype

Journal

NEW JOURNAL OF PHYSICS
Volume 11, Issue -, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1367-2630/11/4/045023

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Funding

  1. Integrated European Project SECOQC [IST-2002-506813]
  2. French National Research Agency Project SEQURE
  3. European Union through a Marie-Curie fellowship
  4. Marie-Curie reintegration grant

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We have designed and realized a prototype that implements a continuous-variable quantum key distribution (QKD) protocol based on coherent states and reverse reconciliation. The system uses time and polarization multiplexing for optimal transmission and detection of the signal and phase reference, and employs sophisticated error-correction codes for reconciliation. The security of the system is guaranteed against general coherent eavesdropping attacks. The performance of the prototype was tested over preinstalled optical fibres as part of a quantum cryptography network combining different QKD technologies. The stable and automatic operation of the prototype over 57 h yielded an average secret key distribution rate of 8 kbit s(-1) over a 3 dB loss optical fibre, including the key extraction process and all quantum and classical communication. This system is therefore ideal for securing communications in metropolitan size networks with high-speed requirements.

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