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Practical security analysis of two-way quantum-key-distribution protocols based on nonorthogonal states

机译:基于非正交状态的双向量子密钥分配协议的实用安全性分析

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Within the broad research scenario of quantum secure communication, two-way quantum key distribution (TWQKD) is a relatively new proposal for sharing secret keys that is not yet fully explored. We analyze the security of TWQKD schemes that use qubits prepared in nonorthogonal states to transmit the key. Investigating protocols that employ an arbitrary number of bases for the channel preparation, we show, in particular, that the security of the LM05 protocol cannot be improved by the use of more than two preparation bases. We also provide an alternative proof of unconditional security for a deterministic TWQKD protocol recently proposed in Beaudry et al., Phys. Rev. A 88, 062302 (2013). In addition, we introduce a deterministic protocol named "TWQKD six-state" and compute an analytical lower bound (which can be tightened) for the maximum amount of information that an eavesdropper could extract in this case. An interesting advantage of our approach to the security analysis of TWQKD is the great simplicity and transparency of the derivations.
机译:在量子安全通信的广泛研究场景中,双向量子密钥分发(TWQKD)是一种用于共享秘密密钥的相对较新的提议,目前尚未得到充分探索。我们分析了TWQKD方案的安全性,该方案使用在非正交状态下准备的量子位来传输密钥。研究使用任意数量基础进行信道准备的协议,我们特别表明,通过使用两个以上的准备基础无法提高LM05协议的安全性。我们还为Beaudry等人(最近在Phys.com上提出)的确定性TWQKD协议提供了无条件安全性的另一种证明。 A版88,062302(2013)。此外,我们引入了一个名为“ TWQKD六态”的确定性协议,并计算了窃听者在这种情况下可以提取的最大信息量的解析下限(可以收紧)。我们对TWQKD进行安全性分析的方法的一个有趣的优点是,派生程序非常简单和透明。

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