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A Hierarchy of Information Quantities for Finite Block Length Analysis of Quantum Tasks

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arxiv 1208.1478 v3 pith:VHQWBSHL submitted 2012-08-07 quant-ph

A Hierarchy of Information Quantities for Finite Block Length Analysis of Quantum Tasks

classification quant-ph
keywords informationquantumtasksentropiesquantitiesblockcalculatefinite
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider two fundamental tasks in quantum information theory, data compression with quantum side information as well as randomness extraction against quantum side information. We characterize these tasks for general sources using so-called one-shot entropies. We show that these characterizations - in contrast to earlier results - enable us to derive tight second order asymptotics for these tasks in the i.i.d. limit. More generally, our derivation establishes a hierarchy of information quantities that can be used to investigate information theoretic tasks in the quantum domain: The one-shot entropies most accurately describe an operational quantity, yet they tend to be difficult to calculate for large systems. We show that they asymptotically agree up to logarithmic terms with entropies related to the quantum and classical information spectrum, which are easier to calculate in the i.i.d. limit. Our techniques also naturally yields bounds on operational quantities for finite block lengths.

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