论文标题

线性量子网络中的匿名会议密钥协议

Anonymous conference key agreement in linear quantum networks

论文作者

de Jong, Jarn, Hahn, Frederik, Eisert, Jens, Walk, Nathan, Pappa, Anna

论文摘要

分享各方之间的多目标量子纠缠可以执行各种安全的通信任务。其中,会议关键协议(CKA)是将密钥分布扩展到多个政党的扩展,最近受到了很多关注。有趣的是,CKA也可以以保护参与方的身份的方式进行,从而提供匿名。在这项工作中,我们为在高度实用的网络设置中实施的三方提出了一个匿名的CKA协议。具体而言,量子中继器节点线用于在所有节点之间构建线性群集状态,然后将其用于匿名在其中任何三个节点之间建立秘密键。节点只需要与邻居共享最大纠缠的对,因此避免了中央服务器共享纠缠状态的必要性。这种中继器设置使我们的协议成为未来量子网络实施的绝佳候选者。我们明确证明我们的协议可以保护参与者的身份,并对有限制度中的关键利率进行分析,从而有助于确定超出点对点网络架构的可行量子通信任务。

Sharing multi-partite quantum entanglement between parties allows for diverse secure communication tasks to be performed. Among them, conference key agreement (CKA), an extension of key distribution to multiple parties, has received much attention recently. Interestingly, CKA can also be performed in a way that protects the identities of the participating parties, therefore providing anonymity. In this work, we propose an anonymous CKA protocol for three parties that is implemented in a highly practical network setting. Specifically, a line of quantum repeater nodes is used to build a linear cluster state among all nodes, which is then used to anonymously establish a secret key between any three of them. The nodes need only share maximally entangled pairs with their neighbours, therefore avoiding the necessity of a central server sharing entangled states. This repeater setup makes our protocol an excellent candidate for implementation in future quantum networks. We explicitly prove that our protocol protects the identities of the participants from one another and perform an analysis of the key rate in the finite regime, contributing to the quest of identifying feasible quantum communication tasks for network architectures beyond point-to-point.

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