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Experimental Activation of Strong Local Passive States with Quantum Information

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arxiv 2203.16269 v2 pith:JBWA5GXO submitted 2022-03-30 quant-ph

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keywords energyquantumlocalstrongactivationdensityexperimentalfirst
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Strong local passivity is a property of multipartite quantum systems from which it is impossible to extract energy locally. Surprisingly, if the strong local passive state displays entanglement, it could be possible to locally activate energy density by adding classical communication between different partitions of the system, through so-called "quantum energy teleportation" protocols. Here, we report both the first experimental observation of local activation of energy density on an entangled state and the first realization of a quantum energy teleportation protocol using nuclear magnetic resonance on a bipartite quantum system.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Does Entanglement Correlation in Ground State Guarantee Quantum Energy Teleportation?

    quant-ph 2025-02 reject novelty 5.0 of 10

    For a parity measurement on the toric code ground state, no Bob-side local unitary can extract energy, so this entangled state does not support QET for that protocol.

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