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EXIT-chart aided code design for symbol-based entanglement-assisted classical communication over quantum channels

机译:基于符号的纠缠辅助的量子信道经典通信的EXIT-chart辅助代码设计

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摘要

Quantum-based transmission is an attractive solution conceived for achieving absolute security. In this quest, we have conceived an EXtrinsic Information Transfer (EXIT) chart aided channel code design for symbol-based entanglement-assisted classical communication over quantum depolarizing channels. Our proposed concatenated code design incorporates a Convolutional Code (CC), a symbol-based Unity Rate Code (URC) and a soft-decision aided 2-qubit Superdense Code (2SD), which is hence referred to as a CC-URC-2SD arrangement. We have optimized our design with the aid of non-binary EXIT charts. Our proposed design operates within 1 dB of the achievable capacity, providing attractive performance gains over its bit-based counterpart. Quantitatively, the bit-based scheme requires 60% more iterations than our symbol-based scheme for the sake of achieving perfect decoding convergence. Furthermore, we demonstrate that the decoding complexity can be reduced by using memory-2 and memory-3 convolutional codes, while still outperforming the bit-based approach
机译:基于量子的传输是一种旨在实现绝对安全性的有吸引力的解决方案。在此任务中,我们构想了用于信息除纠缠的量子纠偏通道经典通信的外部信息传输(EXIT)图表辅助通道代码设计。我们建议的级联代码设计结合了卷积码(CC),基于符号的统一速率码(URC)和软判决辅助的2量子比特超密码(2SD),因此被称为CC-URC-2SD安排。我们借助非二进制EXIT图表优化了设计。我们提出的设计在可实现容量的1 dB之内运行,与基于位的同类产品相比,可提供引人注目的性能提升。在数量上,基于比特的方案比基于符号的方案需要60%的迭代,以实现完美的解码收敛。此外,我们证明了通过使用memory-2和memory-3卷积码可以降低解码复杂度,同时仍然优于基于位的方法

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