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Multi-partite squash operation and its application to device-independent quantum key distribution

机译:多部分壁球操作及其在与设备无关的量子密钥分发中的应用

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摘要

The squash operation, or the squashing model, is a useful mathematical tool for proving the security of quantum key distribution systems using practical (i.e., non-ideal) detectors. At the present, however, this method can only be applied to a limited class of detectors, such as the threshold detector of the Bennett–Brassard 1984 type. In this paper we generalize this method to include multi-partite measurements, such that it can be applied to a wider class of detectors. We demonstrate the effectiveness of this generalization by applying it to the device-independent security proof of the Ekert 1991 protocol, and by improving the associated key generation rate. For proving this result we use two physical assumptions, namely, that quantum mechanics is valid, and that Alice's and Bob's detectors are memoryless.
机译:压扁操作或压扁模型是有用的数学工具,用于使用实用的(即非理想的)检测器来证明量子密钥分发系统的安全性。但是,目前,该方法仅适用于有限种类的检测器,例如Bennett–Brassard 1984型的阈值检测器。在本文中,我们将这种方法推广到包括多部分测量的方法,以便可以将其应用于更广泛的检测器类别。通过将其应用于Ekert 1991协议的与设备无关的安全性证明并提高相关的密钥生成率,我们证明了这种概括的有效性。为了证明这一结果,我们使用两个物理假设,即量子力学是有效的,而爱丽丝和鲍勃的探测器是无记忆的。

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