Deterministic Teleportation and Universal Computation Without Particle Exchange

Fuente: arXiv
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Hauptverfasser: Salih, Hatim, Hance, Jonte R., McCutcheon, Will, Rudolph, Terry, Rarity, John
Format: Preprint
Veröffentlicht: 2020
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author Salih, Hatim
Hance, Jonte R.
McCutcheon, Will
Rudolph, Terry
Rarity, John
author_facet Salih, Hatim
Hance, Jonte R.
McCutcheon, Will
Rudolph, Terry
Rarity, John
contents Teleportation is a cornerstone of quantum technologies, and has played a key role in the development of quantum information theory. Pushing the limits of teleportation is therefore of particular importance. Here, we apply a different aspect of quantumness to teleportation -- namely exchange-free, or counterfactual, computation at a distance. We propose a universal controlled-phase gate, where no particles are exchanged between control and target. This allows the full repertoire of quantum computation to me made exchange-free, including both complete Bell detection among two remote parties and so teleportation and telecloning. Further, we show that this gate, and the protocols based on it, is experimentally feasible, simulating the fidelity of our exchange-free teleportation and telecloning protocols for realistic bit-errors.
format Preprint
id arxiv_https___arxiv_org_abs_2009_05564
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Deterministic Teleportation and Universal Computation Without Particle Exchange
Salih, Hatim
Hance, Jonte R.
McCutcheon, Will
Rudolph, Terry
Rarity, John
Quantum Physics
Teleportation is a cornerstone of quantum technologies, and has played a key role in the development of quantum information theory. Pushing the limits of teleportation is therefore of particular importance. Here, we apply a different aspect of quantumness to teleportation -- namely exchange-free, or counterfactual, computation at a distance. We propose a universal controlled-phase gate, where no particles are exchanged between control and target. This allows the full repertoire of quantum computation to me made exchange-free, including both complete Bell detection among two remote parties and so teleportation and telecloning. Further, we show that this gate, and the protocols based on it, is experimentally feasible, simulating the fidelity of our exchange-free teleportation and telecloning protocols for realistic bit-errors.
title Deterministic Teleportation and Universal Computation Without Particle Exchange
topic Quantum Physics
url https://arxiv.org/abs/2009.05564