论文标题

设计量子网络协议

Designing a Quantum Network Protocol

论文作者

Kozlowski, Wojciech, Dahlberg, Axel, Wehner, Stephanie

论文摘要

第二次量子革命带来了量子互联网的承诺。随着第一个量子网络硬件原型接近完成的新挑战。功能网络不仅仅是物理硬件,而且还处于可扩展量子网络系统的工作。在本文中,我们提出了一种量子网络协议,旨在面对量子力学带来的新的基本和技术挑战,以实现端到端的量子通信。我们开发了一个量子数据平面协议,该协议可以启用端到端量子通信,并可以作为更复杂服务的基础。近期量子技术的主要挑战之一是腐烂 - 量子信息的逐渐衰减 - 对存储时间施加了极为严格的限制。我们的协议旨在在短量子记忆寿命面前有效。我们使用模拟器进行量子网络证明了这一点,并证明该协议即使面对造成的巨大损失,该协议也能够提供其服务。最后,我们得出的结论是,该协议在当今正在开发的极限资源的硬件上仍然有效,该硬件突显了这项工作的及时性。

The second quantum revolution brings with it the promise of a quantum internet. As the first quantum network hardware prototypes near completion new challenges emerge. A functional network is more than just the physical hardware, yet work on scalable quantum network systems is in its infancy. In this paper we present a quantum network protocol designed to enable end-to-end quantum communication in the face of the new fundamental and technical challenges brought by quantum mechanics. We develop a quantum data plane protocol that enables end-to-end quantum communication and can serve as a building block for more complex services. One of the key challenges in near-term quantum technology is decoherence -- the gradual decay of quantum information -- which imposes extremely stringent limits on storage times. Our protocol is designed to be efficient in the face of short quantum memory lifetimes. We demonstrate this using a simulator for quantum networks and show that the protocol is able to deliver its service even in the face of significant losses due to decoherence. Finally, we conclude by showing that the protocol remains functional on the extremely resource limited hardware that is being developed today underlining the timeliness of this work.

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