Department of Physics, Technical University of Denmark, Fysikvej, 2800 Kongens Lyngby, Denmark.
Nat Commun. 2012;3:1083. doi: 10.1038/ncomms2097.
Quantum key distribution enables two remote parties to grow a shared key, which they can use for unconditionally secure communication over a certain distance. The maximal distance depends on the loss and the excess noise of the connecting quantum channel. Several quantum key distribution schemes based on coherent states and continuous variable measurements are resilient to high loss in the channel, but are strongly affected by small amounts of channel excess noise. Here we propose and experimentally address a continuous variable quantum key distribution protocol that uses modulated fragile entangled states of light to greatly enhance the robustness to channel noise. We experimentally demonstrate that the resulting quantum key distribution protocol can tolerate more noise than the benchmark set by the ideal continuous variable coherent state protocol. Our scheme represents a very promising avenue for extending the distance for which secure communication is possible.
量子密钥分发使两个远程方能够生成一个共享密钥,他们可以在一定距离上使用该密钥进行无条件安全通信。最大距离取决于连接量子信道的损耗和过剩噪声。几种基于相干态和连续变量测量的量子密钥分发方案对信道中的高损耗具有弹性,但对少量信道过剩噪声的影响非常敏感。在这里,我们提出并实验解决了一种连续变量量子密钥分发协议,该协议使用调制的脆弱纠缠态光来大大提高对信道噪声的鲁棒性。我们的实验表明,所提出的量子密钥分发协议可以容忍比理想连续变量相干态协议设定的基准更多的噪声。我们的方案为扩展安全通信可能的距离提供了一条非常有前途的途径。