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首页> 外文期刊>Physical Review, A >Sufficiency of quantum non-Gaussianity for discrete-variable quantum key distribution over noisy channels
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Sufficiency of quantum non-Gaussianity for discrete-variable quantum key distribution over noisy channels

机译:Quantum非高斯的充分性用于嘈杂渠道的离散变量量子密钥分布

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摘要

Quantum key distribution can be enhanced and extended if nonclassical single-photon states of light are used. We study a connection between the security of quantum key distribution and quantum non-Gaussianity of light arriving at the receiver's detection system after the propagation through a noisy quantum channel, being under full control of an eavesdropper performing general collective attacks. We show that while quantum nonclassicality exhibited by the light arriving at the receiver's station is a necessary indication of the security of the discrete-variable protocols, quantum non-Gaussianity can be a sufficient indication of their security. Therefore, checking for non-Gaussianity of this light by performing standard autocorrelation function measurement can be used for prior verification of the usability of prepare-and-measure schemes. It can play a similar role to the prior verification of the quantum correlations sufficient to violate Bell inequalities for entanglement-based protocols.
机译:如果使用非分类单光子状态,则可以增强和扩展量子密钥分布。我们研究了通过嘈杂量子通道传播后到达接收器检测系统之后的量子密钥分布和光的量子的安全性之间的联系,完全控制执行一般集体攻击的窃听器。我们表明,虽然由到达接收器站的光所呈现的量子展示的量子非展示是离散可变协议的安全性的必要指示,但是量子非高斯能力可以是其安全性的充分指示。因此,通过执行标准自相关函数测量检查这种光的非高斯度可用于先前验证准备和测量方案的可用性。它可以在最先前验证足以验证足以侵犯基于纠缠的协议的响铃不等式的量子相关的类似作用。

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