Continuity of entropies via integral representations

August 27, 2024 Β· Declared Dead Β· πŸ› IEEE Transactions on Information Theory

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Authors Mario Berta, Ludovico Lami, Marco Tomamichel arXiv ID 2408.15226 Category quant-ph: Quantum Computing Cross-listed cs.IT, math-ph Citations 12 Venue IEEE Transactions on Information Theory Last Checked 5 months ago
Abstract
We show that Frenkel's integral representation of the quantum relative entropy provides a natural framework to derive continuity bounds for quantum information measures. Our main general result is a dimension-independent semi-continuity relation for the quantum relative entropy with respect to the first argument. Using it, we obtain a number of results: (1) a tight continuity relation for the conditional entropy in the case where the two states have equal marginals on the conditioning system, resolving a conjecture by Wilde in this special case; (2) a stronger version of the Fannes-Audenaert inequality on quantum entropy; (3) better estimates on the quantum capacity of approximately degradable channels; (4) an improved continuity relation for the entanglement cost; (5) general upper bounds on asymptotic transformation rates in infinite-dimensional entanglement theory; and (6) a proof of a conjecture due to Christandl, Ferrara, and Lancien on the continuity of 'filtered' relative entropy distances.
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