4.6 Article

Coexistence of continuous variable QKD with intense DWDM classical channels

期刊

NEW JOURNAL OF PHYSICS
卷 17, 期 -, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1367-2630/17/4/043027

关键词

quantum key distribution; wavelength division multiplexing; Raman scattering; coherent communications

资金

  1. ANR, through the project QUANTUM-WDM [ANR-12-EMMA-0034]
  2. DIRECCTE Ile-de-France through the QVPN project [FEDER-41402]
  3. European Union through the Q-CERT (FP7-PEOPLE-IAPP) project

向作者/读者索取更多资源

We demonstrate experimentally the feasibility of continuous variable quantum key distribution (CV-QKD) in dense-wavelength-division multiplexing networks (DWDM), where QKD will typically have to coexist with several co-propagating (forward or backward) C-band classical channels whose launch power is around 0 dBm. We have conducted experimental tests of the coexistence of CV-QKD multiplexed with an intense classical channel, for different input powers and different DWDM wavelengths. Over a 25 km fiber, a CV-QKD operated over the 1530.12 nm channel can tolerate the noise arising from up to 11.5 dBm classical channel at 1550.12 nm in the forward direction (9.7 dBm in backward). A positive key rate (0.49 kbits s(-1)) can be obtained at 75 km with classical channel power of respectively -3 and -9 dBm in forward and backward. Based on these measurements, we have also simulated the excess noise and optimized channel allocation for the integration of CV-QKD in some access networks. We have, for example, shown that CV-QKD could coexist with five pairs of channels (with nominal input powers: 2 dBm forward and 1 dBm backward) over a 25 km WDM-PON network. The obtained results demonstrate the outstanding capacity of CV-QKD to coexist with classical signals of realistic intensity in optical networks.

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