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One-Sided Device-Independent QKD and Position-Based Cryptography from Monogamy Games

机译:一夫一妻制游戏中与设备无关的QKD和基于位置的密码学

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A serious concern with quantum key distribution (QKD) schemes is that, when under attack, the quantum devices in a real-life implementation may behave differently than modeled in the security proof. This can lead to real-life attacks against provably secure QKD schemes. In this work, we show that the standard BB84 QKD scheme is onesided device-independent. This means that security holds even if Bob's quantum device is arbitrarily malicious, as long as Alice's device behaves as it should. Thus, we can completely remove the trust into Bob's quantum device for free, without the need for changing the scheme, and without the need for hard-to-implement loophole-free violations of Bell inequality, as is required for fully (meaning two-sided) device-independent QKD. For our analysis, we introduce a new quantum game, called a monogamy-of-entanglement game, and we show a strong parallel repetition theorem for this game. This new notion is likely to be of independent interest and to find additional applications. Indeed, besides the application to QKD, we also show a direct application to position-based quantum cryptography: we give the first security proof for a one-round position-verification scheme that requires only single-qubit operations.
机译:量子密钥分配(QKD)方案的一个严重问题是,在受到攻击时,实际实现中的量子设备的行为可能与安全性证明中建模的行为不同。这可能导致针对可证明安全的QKD方案的实际攻击。在这项工作中,我们证明了标准的BB84 QKD方案与设备无关。这意味着即使Bob的量子设备是任意恶意的,只要Alice的设备行为正常,安全性就可以保持。因此,我们可以完全免费地完全消除对Bob量子设备的信任,而无需更改方案,也不需要完全实现对贝尔不等式的难以实现的,无漏洞的违反贝尔不等式的行为(意味着两个-侧)与设备无关的QKD。为了进行分析,我们引入了一种新的量子游戏,称为一夫一妻制游戏,并且我们展示了该游戏的强并行重复定理。这个新概念很可能会引起人们的关注,并会找到其他应用。的确,除了应用于QKD之外,我们还展示了直接应用于基于位置的量子密码学:我们为仅需要单量子位操作的单轮位置验证方案提供了第一份安全证明。

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