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Asymptotically Limitless Quantum Energy Teleportation via Qudit Probes

arXiv:1510.03751 · doi:10.1103/PhysRevA.93.022308

Abstract

We propose a modified Quantum Energy Teleportation (QET) scheme that uses arbitrary-dimensional qudit probes and polynomially localized Hamiltonians. We find that with an appropriate scaling of parameters, the teleported energy scales with the teleportation distance more favourably than the non-local tails of the Hamiltonians. We show that by allowing the exchange of arbitrary amounts of information between agents and in a suitable limit, an arbitrarily large amount of energy can be teleported through a massless quantum field.

15 pages, 1 Figure, 4 Appendices. RevTeX 4.1. V2: Extended version, added study of locality of the interactions. Title and abstract updated