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首页> 外文期刊>International Journal of Quantum Information >QUANTUM COMMUNICATION BETWEEN ANONYMOUS SENDER AND ANONYMOUS RECEIVER IN THE PRESENCE OF STRONG ADVERSARY
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QUANTUM COMMUNICATION BETWEEN ANONYMOUS SENDER AND ANONYMOUS RECEIVER IN THE PRESENCE OF STRONG ADVERSARY

机译:强烈敌对条件下匿名接收者与匿名接收者之间的量子通信。

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摘要

While many scenarios of anonymous communication can be solved by various famous classical techniques including mix nets or dining cryptographers (DC), an abundant amount of anonymous tasks remains open. In this paper, we present a solution to one such task. Our protocol serves as a private communication channel for quantum messages while ensuring that both the sender and the receiver stay anonymous in a set of all parties. Our protocol is a continuation of our previous work on anonymous transmission of quantum information. The protocol does not require trusted parties, and is secure against an active adversary. It can also withstand denial of service attacks. The protocol exhibits an advantage of quantum resources over classical because no classical solution is known (in the same security settings). Entanglement swapping technique is used to create "symmetry" in the protocol, which makes it very transparent and easier to analyze. The security analysis we present is heavily based on our previous work on quantum anonymous communication. The task we implement is also a nice illustration of a cryptographic task where two parties in a multi-party protocol can be dishonest at the same time, but are not cooperating.
机译:尽管可以通过各种著名的经典技术(包括混合网或就餐密码学家(DC))解决匿名通信的许多情况,但仍有大量匿名任务开放。在本文中,我们提出了一项解决此类任务的解决方案。我们的协议充当量子消息的专用通信通道,同时确保发送方和接收方在所有各方中都保持匿名。我们的协议是我们先前有关量子信息匿名传输的工作的延续。该协议不需要受信任的各方,并且对于活动的对手是安全的。它还可以承受拒绝服务攻击。该协议展现了量子资源优于经典资源的优势,因为尚无经典解决方案(在相同的安全设置下)。纠缠交换技术用于在协议中创建“对称性”,从而使其非常透明且易于分析。我们提出的安全性分析很大程度上是基于我们之前在量子匿名通信方面的工作。我们实现的任务也很好地说明了加密任务,在该任务中,多方协议中的两个方可以同时处于不诚实状态,但不能合作。

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