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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Applications of position-based coding to classical communication over quantum channels
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Applications of position-based coding to classical communication over quantum channels

机译:基于位置的编码在量子信道经典通信中的应用

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Recently, a coding technique called position-based coding has been used to establish achievability statements for various kinds of classical communication protocols that use quantum channels. In the present paper, we apply this technique in the entanglement-assisted setting in order to establish lower bounds for error exponents, lower bounds on the second-order coding rate, and one-shot lower bounds. We also demonstrate that position-based coding can be a powerful tool for analyzing other communication settings. In particular, we reduce the quantum simultaneous decoding conjecture for entanglement-assisted or unassisted communication over a quantum multiple access channel to open questions in multiple quantum hypothesis testing. We then determine achievable rate regions for entanglement-assisted or unassisted classical communication over a quantum multiple-access channel, when using a particular quantum simultaneous decoder. The achievable rate regions given in this latter case are generally suboptimal, involving differences of Renyi-two entropies and conditional quantum entropies.
机译:最近,已经使用称为基于位置的编码的编码技术来建立用于使用量子信道的各种经典通信协议的可实现性语句。在本文中,我们在纠缠辅助设置中应用该技术,以便建立误差指数的下限,下阶编码率下限,单次下限。我们还证明了基于位置的编码可以是用于分析其他通信设置的强大工具。特别地,我们将量子同时解码猜想用于通过量子多址通道上的缠结辅助或非译所通信,以在多个量子假设检测中打开问题。然后,当使用特定量子同时解码器时,我们通过量子多址通道确定可实现的速率区域以通过量子多址通道进行缠结辅助或非讨论的经典通信。在后一种情况下,可实现的速率区域通常是次优,涉及仁义 - 两种熵和条件量子熵的差异。

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