Quantum conference key agreement is an important cryptographic primitive for future quantum network. Realizing this primitive requires high-brightness and robust multiphoton entanglement sources, which is challenging in experiment and unpractical in application because of limited transmission distance caused by channel loss. Here we report a measurement-device-independent quantum conference key agreement protocol with enhanced transmission efficiency over lossy channel. With spatial multiplexing nature and adaptive operation, our protocol can break key rate bounds on quantum communication over quantum network without quantum memory. Compared with previous work, our protocol shows superiority in key rate and transmission distance within the state-of-the-art technology. Furthermore, we analyse the security of our protocol in the composable framework and evaluate its performance in the finite-size regime to show practicality. Based on our results, we anticipate that our protocol will play an indispensable role in constructing multipartite quantum network.
翻译:----
量子会议密钥协商是未来量子网络的重要密码原语。实现这种原语需要高亮度和强韧的多光子纠缠源,这在实验上具有挑战性,而由通道损耗引起的有限传输距离在应用上也不切实际。在这里,我们报告了一种具有增强传输效率的测量装置独立量子会议密钥协商协议,可以在无需量子记忆的情况下打破量子网络上的密钥率限制。通过空间多路复用特性和自适应操作,我们的协议在密钥率和传输距离方面显示出先进技术的优越性。此外,我们在组合框架中分析了我们协议的安全性,并在有限大小的情景下评估了其性能,以显示其实用性。基于我们的结果,我们预期我们的协议将在构建多方量子网络中发挥不可或缺的作用。