Title :
Field Test of Measurement-Device-Independent Quantum Key Distribution
Author :
Yan-Lin Tang ; Hua-Lei Yin ; Si-Jing Chen ; Yang Liu ; Wei-jun Zhang ; Xiao Jiang ; Lu Zhang ; Jian Wang ; Li-Xing You ; Jian-Yu Guan ; Dong-xu Yang ; Zhen Wang ; Hao Liang ; Zhen Zhang ; Nan Zhou ; Xiongfeng Ma ; Teng-Yun Chen ; Qiang Zhang ; Jian-Wei Pa
Author_Institution :
Dept. of Modern Phys., Univ. of Sci. & Technol. of China, Hefei, China
Abstract :
The main type of obstacles of practical applications of quantum key distribution (QKD) network are various attacks on detection. Measurement-device-independent QKD (MDIQKD) protocol is immune to all these attacks, and thus, a strong candidate for network security. Recently, several proof-of-principle demonstrations of MDIQKD have been performed. Although novel, those experiments are implemented in the laboratory with secure key rates less than 0.1 b/s. Besides, they need manual calibration frequently to maintain the system performance. These aspects render these demonstrations far from practicability. Thus, justification is extremely crucial for practical deployment into the field environment. Here, by developing an automatic feedback MDIQKD system operated at a high clock rate, we perform a field test via deployed fiber network of 30 km total length achieving a 16.9 b/s secure key rate. The result lays the foundation for a global quantum network, which can shield from all the detection-side attacks.
Keywords :
optical fibre networks; quantum cryptography; quantum optics; automatic feedback MDIQKD system; clock rate; detection-side attacks; fiber network; field test; measurement-device-independent QKD protocol; measurement-device-independent quantum key distribution; network security; quantum key distribution network; secure key rate; Calibration; Laser feedback; Laser modes; Measurement by laser beam; Protocols; Temperature measurement; Automatic Feedback Systems; Field test; Measurement-Device-Independent Quantum Key Distribution; automatic feedback systems; measurement-device-independent quantum key distribution;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2014.2361796