Optimizing Bounds on the Classical Information Rate of Quantum Channels with Memory

Michael X. Cao, P. Vontobel
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引用次数: 1

Abstract

We are interested in classical communication over a quantum channel with memory, in particular, we are interested in quantum-auxiliary-channel-based upper and lower bounds on the information rate. Toward improving these bounds, we propose efficient algorithms for optimizing the auxiliary channel. From a practical perspective, the lower bounds are of significant interest because they represent mismatched information rates, i.e., information rates that are achievable by a communication system where the decoder is matched to the auxiliary channel, instead of the original channel. Moreover, the auxiliary channels are learned in a data-driven approach, i.e., only input/output sequences of the true channel are needed, but not the channel model of the true channel.
具有存储器的量子信道经典信息速率界的优化
我们对具有记忆的量子信道上的经典通信感兴趣,特别是对基于量子辅助信道的信息速率的上下界感兴趣。为了改善这些边界,我们提出了优化辅助信道的有效算法。从实际的角度来看,下界具有重要意义,因为它们表示不匹配的信息速率,即,在解码器与辅助信道而不是原始信道匹配的通信系统中可以实现的信息速率。此外,辅助通道以数据驱动的方式学习,即只需要真通道的输入/输出序列,而不需要真通道的通道模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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