A fully automated entanglement-based quantum cryptography system for telecom fiber networks

作者:Treiber Alexander; Poppe Andreas; Hentschel Michael; Ferrini Daniele; Loruenser Thomas; Querasser Edwin; Matyus Thomas; Huebel Hannes; Zeilinger Anton*
来源:New Journal of Physics, 2009, 11(4): 045013.
DOI:10.1088/1367-2630/11/4/045013

摘要

We present in this paper a quantum key distribution (QKD) system based on polarization entanglement for use in telecom fibers. A QKD exchange up to 50 km was demonstrated in the laboratory with a secure key rate of 550 bits s(-1). The system is compact and portable with a fully automated start-up, and stabilization modules for polarization, synchronization and photon coupling allow hands-off operation. Stable and reliable key exchange in a deployed optical fiber of 16 km length was demonstrated. In this fiber network, we achieved over 2 weeks an automatic key generation with an average key rate of 2000 bits s(-1) without manual intervention. During this period, the system had an average entanglement visibility of 93%, highlighting the technical level and stability achieved for entanglement-based quantum cryptography.

  • 出版日期2009-4