English

Long-distance transmission of quantum key distribution coexisting with classical optical communication over weakly-coupled few-mode fiber

Quantum Physics 2020-05-20 v1

Abstract

Quantum key distribution (QKD) is one of the most practical applications in quantum information processing, which can generate information-theoretical secure keys between remote parties. With the help of the wavelength-division multiplexing technique, QKD has been integrated with the classical optical communication networks. The wavelength-division multiplexing can be further improved by the mode-wavelength dual multiplexing technique with few-mode fiber (FMF), which has additional modal isolation and large effective core area of mode, and particularly is practical in fabrication and splicing technology compared with the multi-core fiber. Here, we present for the first time a QKD implementation coexisting with classical optical communication over weakly-coupled FMF using all-fiber mode-selective couplers. The co-propagation of QKD with one 100 Gbps classical data channel at -2.60 dBm launched power is achieved over 86 km FMF with 1.3 kbps real-time secure key generation. Compared with single-mode fiber, the average Raman noise in FMF is reduced by 86% at the same fiber-input power. Our work implements an important approach to the integration between QKD and classical optical communication and previews the compatibility of quantum communications with the next-generation mode division multiplexing networks

Keywords

Cite

@article{arxiv.2002.00420,
  title  = {Long-distance transmission of quantum key distribution coexisting with classical optical communication over weakly-coupled few-mode fiber},
  author = {Bi-Xiao Wang and Yingqiu Mao and Lei Shen and Lei Zhang and Xiao-Bo Lan and Dawei Ge and Yuyang Gao and Juhao Li and Yan-Lin Tang and Shi-Biao Tang and Jun Zhang and Teng-Yun Chen and Jian-Wei Pan},
  journal= {arXiv preprint arXiv:2002.00420},
  year   = {2020}
}