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Multipartite Entanglement Verification Resistant against Dishonest Parties

机译:对抗不诚实方的多方纠缠验证

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摘要

Future quantum information networks will consist of quantum and classical agents, who have the ability to communicate in a variety of ways with trusted and untrusted parties and securely delegate computational tasks to untrusted large-scale quantum computing servers. Multipartite quantum entanglement is a fundamental resource for such a network and, hence, it is imperative to study the possibility of verifying a multipartite entanglement source in a way that is efficient and provides strong guarantees even in the presence of multiple dishonest parties. In this Letter, we show how an agent of a quantum network can perform a distributed verification of a source creating multipartite Greenberger-Horne-Zeilinger (GHZ) states with minimal resources, which is, nevertheless, resistant against any number of dishonest parties. Moreover, we provide a tight tradeoff between the level of security and the distance between the state produced by the source and the ideal GHZ state. Last, by adding the resource of a trusted common random source, we can further provide security guarantees for all honest parties in the quantum network simultaneously.
机译:未来的量子信息网络将由量子代理和经典代理组成,它们具有与受信任和不受信任的各方以各种方式进行通信的能力,并能够将计算任务安全地委派给不受信任的大规模量子计算服务器。多部分量子纠缠是这种网络的基本资源,因此,有必要研究以即使在存在多个不诚实方的情况下也能有效且提供有力保证的方式来验证多部分纠缠源的可能性。在这封信中,我们展示了量子网络的代理如何以最少的资源创建一个多方Greenberger-Horne-Zeilinger(GHZ)状态的源进行分布式验证,但是这种状态可以抵抗任何数量的不诚实方。此外,我们在安全级别与源所产生的状态与理想GHZ状态之间的距离之间进行了严格的权衡。最后,通过添加受信任的通用随机源的资源,我们可以进一步为量子网络中的所有诚实方同时提供安全保证。

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