Zhu Feng, Zhang Wei, Sheng Yubo, Huang Yidong
Tsinghua National Laboratory for Information Science and Technology, Department of Electronic Engineering, Tsinghua University, Beijing 100084, China.
Tsinghua National Laboratory for Information Science and Technology, Department of Electronic Engineering, Tsinghua University, Beijing 100084, China.
Sci Bull (Beijing). 2017 Nov 30;62(22):1519-1524. doi: 10.1016/j.scib.2017.10.023. Epub 2017 Oct 31.
Quantum secure direct communication (QSDC) is an important quantum communication branch, which realizes the secure information transmission directly without encryption and decryption processes. Recently, two table-top experiments have demonstrated the principle of QSDC. Here, we report the first long-distance QSDC experiment, including the security test, information encoding, fiber transmission and decoding. After the fiber transmission of 0.5 km, quantum state fidelities of the two polarization entangled Bell states are 91% and 88%, respectively, which are used for information coding. We theoretically analyze the performance of the QSDC system based on current optical communication technologies, showing that QSDC over fiber links of several tens kilometers could be expected. It demonstrates the potential of long-distance QSDC and supports its future applications on quantum communication networks.
量子安全直接通信(QSDC)是量子通信的一个重要分支,它无需加密和解密过程即可直接实现安全的信息传输。最近,两个桌面实验证明了QSDC的原理。在此,我们报告首个长距离QSDC实验,包括安全性测试、信息编码、光纤传输和解码。在0.5千米的光纤传输后,两个偏振纠缠贝尔态的量子态保真度分别为91%和88%,它们被用于信息编码。我们基于当前光通信技术对QSDC系统的性能进行了理论分析,结果表明有望实现几十千米光纤链路的QSDC。这证明了长距离QSDC的潜力,并支持其未来在量子通信网络中的应用。