Deconstruction and conditional erasure of quantum correlations
Mario Berta, Fernando G. S. L. Brandao, Christian Majenz, and Mark M., Wilde

TL;DR
This paper introduces the concept of deconstruction cost for tripartite quantum states, showing it equals the conditional quantum mutual information (CQMI), and explores its implications for quantum correlations like discord and squashed entanglement.
Contribution
It establishes the operational interpretation of CQMI through state deconstruction and conditional erasure protocols, linking them to quantum correlation measures.
Findings
Deconstruction cost equals CQMI for tripartite states.
Conditional erasure rate also equals CQMI.
Quantum discord and squashed entanglement have operational meanings in this context.
Abstract
We define the deconstruction cost of a tripartite quantum state on systems as the minimum rate of noise needed to apply to the systems, such that there is negligible disturbance to the marginal state on the systems, while the system of the resulting state is locally recoverable from the system alone. We refer to such actions as deconstruction operations and protocols implementing them as state deconstruction protocols. State deconstruction generalizes Landauer erasure of a single-party quantum state as well the erasure of correlations of a two-party quantum state. We find that the deconstruction cost of a tripartite quantum state on systems is equal to its conditional quantum mutual information (CQMI) , thus giving the CQMI an operational interpretation in terms of a state deconstruction protocol. We also define a related task called conditional…
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Taxonomy
TopicsQuantum Information and Cryptography · Quantum Computing Algorithms and Architecture · Quantum Mechanics and Applications
