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Stein’s Lemma for Classical-Quantum Channels

机译:斯坦因的经典量子通道引理

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It is well known that for the discrimination of classical and quantum channels in the finite, non-asymptotic regime, adaptive strategies can give an advantage over non-adaptive strategies. However, Hayashi [IEEE Trans. Inf. Theory 55(8), 3807 (2009)] showed that in the asymptotic regime, the exponential error rate for the discrimination of classical channels is not improved in the adaptive setting. We show that, for the discrimination of classical-quantum channels, adaptive strategies do not lead to an asymptotic advantage. As our main result, this establishes Stein’s lemma for classical-quantum channels. Our proofs are based on the concept of amortized distinguishability of channels, which we analyse using entropy inequalities.
机译:众所周知,对于在有限的非渐近状态下的经典和量子通道的判别,自适应策略比非自适应策略具有优势。然而,林[IEEE Trans。 Inf。理论55(8),3807(2009)]表明,在渐近状态下,经典信道的判别误差率在自适应设置下没有提高。我们表明,对于经典量子信道的判别,自适应策略不会导致渐近优势。作为我们的主要结果,这建立了斯坦因经典量子信道的引理。我们的证明基于渠道摊销可区分性的概念,我们使用熵不等式进行分析。

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