Quantum Multiple Access Wiretap Channel: On the One-Shot Achievable Secrecy Rate Regions

Hadi Aghaee, Bahareh Akhbari
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Abstract

In this paper, we want to investigate classical-quantum multiple access wiretap channels (CQ-MA-WTC) under one-shot setting. In this regard, we analyze the CQ-MA-WTC using simultaneous position-based decoder for reliable decoding and using a newly introduced technique in order to decode securely. Also, for the sake of comparison, we analyze the CQ-MA-WTC using Sen's one-shot joint typicality lemma for reliable decoding. The simultaneous position-based decoder tends to a multiple hypothesis testing problem. Also, using convex splitting to analyze the privacy criteria in a simultaneous scenario becomes problematic. To overcome both problems, we first introduce a new channel that can be considered as a dual to the CQ-MA-WTC. This channel is called a point-to-point quantum wiretap channel with multiple messages (PP-QWTC). In the following, as a strategy to solve the problem, we also investigate and analyze quantum broadcast channels (QBCs) under the one-shot setting.
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量子多址窃听信道:一次可实现保密率区域
本文研究了单次设置下的经典量子多址窃听信道(CQ-MA-WTC)。在这方面,我们分析了CQ-MA-WTC使用同时基于位置的解码器进行可靠解码,并使用新引入的技术进行安全解码。同时,为了进行比较,我们利用Sen的一次联合典型引理对CQ-MA-WTC进行了可靠解码分析。同时基于位置的解码器往往是一个多假设检验问题。此外,在同步场景中使用凸分割来分析隐私标准也会出现问题。为了克服这两个问题,我们首先引入了一个新的通道,可以将其视为CQ-MA-WTC的对偶通道。该信道称为多消息点对点量子窃听信道(PP-QWTC)。接下来,作为解决问题的策略,我们还研究和分析了单次设置下的量子广播信道(qbc)。
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