量子密钥分配
光子学
钥匙(锁)
炸薯条
硅光子学
光电子学
可扩展性
激光器
通信源
密钥生成
计算机科学
电子工程
物理
量子
电信
光学
计算机网络
加密
工程类
量子力学
计算机安全
数据库
作者
Gong Zhang,Jing Yan Haw,Hong Cai,Feihu Xu,Syed M. Assad,Joseph F. Fitzsimons,Xiaoqi Zhou,Yan Zhang,Song Yu,Jian Wu,Wee Ser,L. C. Kwek,A. Q. Liu
出处
期刊:Nature Photonics
[Springer Nature]
日期:2019-08-12
卷期号:13 (12): 839-842
被引量:245
标识
DOI:10.1038/s41566-019-0504-5
摘要
Quantum key distribution (QKD) is a quantum communication technology that promises unconditional communication security. High-performance and cost-effective QKD systems are essential for the establishment of quantum communication networks1–3. By integrating all the optical components (except the laser source) on a silicon photonic chip, we have realized a stable, miniaturized and low-cost system for continuous-variable QKD (CV-QKD) that is compatible with the existing fibre optical communication infrastructure4. Here, the integrated silicon photonic chip is demonstrated for CV-QKD. It implements the widely studied Gaussian-modulated coherent state protocol that encodes continuous distributed information on the quadrature of laser light5,6. Our proof-of-principle chip-based CV-QKD system is capable of producing a secret key rate of 0.14 kbps (under collective attack) over a simulated distance of 100 km in fibre, offering new possibilities for low-cost, scalable and portable quantum networks. A sender and a receiver for continuous-variable quantum key distribution are packed onto separate silicon photonic chips. By using an external 1,550-nm laser, a secret key rate of 0.14 kbps is transmitted over a simulated distance of 100 km in fibre.
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