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Quantum Authentication with Key Recycling

机译:带有密钥回收的量子身份验证

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摘要

We show that a family of quantum authentication protocols introduced in [Barnum et al., FOCS 2002] can be used to construct a secure quantum channel and additionally recycle all of the secret key if the message is successfully authenticated, and recycle part of the key if tampering is detected. We give a full security proof that constructs the secure channel given only insecure noisy channels and a shared secret key. We also prove that the number of recycled key bits is optimal for this family of protocols, i.e., there exists an adversarial strategy to obtain all non-recycled bits. Previous works recycled less key and only gave partial security proofs, since they did not consider all possible distinguishers (environments) that may be used to distinguish the real setting from the ideal secure quantum channel and secret key resource.
机译:我们展示了[Barnum等人,FOCS 2002]中引入的一系列量子身份验证协议可用于构建安全的量子通道,并且如果消息成功通过身份验证,则还可以回收所有秘密密钥,并回收部分密钥如果检测到篡改。我们给出了完整的安全证明,该安全证明仅在不安全的嘈杂信道和共享密钥的情况下构造了安全信道。我们还证明了回收密钥位数对于该系列协议是最佳的,即存在一种对抗策略来获取所有非回收比特。以前的作品回收了较少的密钥,并且只给出了部分安全性证明,因为他们没有考虑所有可能用于区分理想设置和理想安全量子通道以及秘密密钥资源的区分符(环境)。

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