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Quantum State Redistribution for Ensemble Sources

机译:集合源的量子态重新分布

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We consider a generalization of the quantum state redistribution task, where pure multipartite states from an ensemble source are distributed among an encoder, a decoder and a reference system. The encoder, Alice, has access to two quantum systems: system A which she compresses and sends to the decoder, Bob, and the side information system C which she wants to keep at her site. Bob has access to quantum side information in a system B, wants to decode the compressed information in such a way to preserve the correlations with the reference system on average.As figures of merit, we consider both block error (which is the usual one in source coding) and per-copy error (which is more akin to rate-distortion theory), and find the optimal compression rate for the second criterion, and achievable and converse bounds for the first. The latter almost match in general, up to an asymptotic error and an unbounded auxiliary system; for so-called irreducible sources they are provably the same. Full paper forthcoming [1].
机译:我们考虑了量子态重新分布任务的一般化,其中来自集合源的纯多部分态被分布在编码器,解码器和参考系统之间。编码器Alice可以访问两个量子系统:她压缩并发送给解码器Bob的系统A,以及她希望保留在其现场的辅助信息系统C。 Bob可以访问系统B中的量子辅助信息,因此希望以这种方式对压缩信息进行解码,以平均保持与参考系统的相关性。作为品质因数,我们考虑了两个块误差(这是通常的误差)。源编码)和按副本的错误(更类似于速率失真理论),并为第二个准则找到最佳压缩率,为第一个准则找到可达到的和相反的界限。后者总体上几乎匹配,直至出现渐近误差和无界的辅助系统。对于所谓的不可约来源,它们证明是相同的。论文全文即将发表[1]。

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