We study the process of assisted work distillation. This scenario arises when two parties share a bipartite quantum state $\rho_{AB}$ and their task is to locally distill the optimal amount of work when one party is restricted to thermal operations, whereas the other can perform general quantum operations and they are allowed to communicate classically. We demonstrate that this question is intimately related to the distillation of classical and quantum correlations. In particular, we show that the advantage of one party performing global measurements over many copies of $\rho_{AB}$ is related to the nonadditivity of the entanglement of formation. We also show that there may exist work bound in the quantum correlations of the state that is only extractable under the wider class of local Gibbs-preserving operations.

Assisted Work Distillation

Lami, Ludovico;
2019

Abstract

We study the process of assisted work distillation. This scenario arises when two parties share a bipartite quantum state $\rho_{AB}$ and their task is to locally distill the optimal amount of work when one party is restricted to thermal operations, whereas the other can perform general quantum operations and they are allowed to communicate classically. We demonstrate that this question is intimately related to the distillation of classical and quantum correlations. In particular, we show that the advantage of one party performing global measurements over many copies of $\rho_{AB}$ is related to the nonadditivity of the entanglement of formation. We also show that there may exist work bound in the quantum correlations of the state that is only extractable under the wider class of local Gibbs-preserving operations.
2019
Settore PHYS-04/A - Fisica teorica della materia, modelli, metodi matematici e applicazioni
Quantum; entanglement; entropy; purification; capacity; cost; bipartite quantum state; global measurements; non-additivity; quantum correlations; quantum operations; thermal operations
   Genuine Quantumness in Cooperative Phenomena
   GQCOP
   European Commission
   Horizon 2020 Framework Programme
   637352
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11384/153145
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