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Quantum teleportation through time-shifted AdS wormholes

Based on the work of Gao-Jafferis-Wall and Maldacena-Stanford-Yang, we observe that the time-shifted thermofield states of two entangled CFTs can be made traversable by an appropriate coupling of the two CFTs, or alternatively by the application of a modified quantum teleportation protocol. This pro...

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Autores principales: van Breukelen, Rik, Papadodimas, Kyriakos
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2018)142
http://cds.cern.ch/record/2285987
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author van Breukelen, Rik
Papadodimas, Kyriakos
author_facet van Breukelen, Rik
Papadodimas, Kyriakos
author_sort van Breukelen, Rik
collection CERN
description Based on the work of Gao-Jafferis-Wall and Maldacena-Stanford-Yang, we observe that the time-shifted thermofield states of two entangled CFTs can be made traversable by an appropriate coupling of the two CFTs, or alternatively by the application of a modified quantum teleportation protocol. This provides evidence for the smoothness of the horizon for a large class of entangled states related to the thermofield by time-translations. The smoothness of these states has some relevance for the firewall paradox and the proposal that some observables in quantum gravity may be state-dependent. We notice that quantum teleportation through these entangled states could be used in a laboratory setup to implement a “time-machine”, which allows the observer to travel far in the future.
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spelling cern-22859872023-10-04T06:07:37Zdoi:10.1007/JHEP08(2018)142http://cds.cern.ch/record/2285987engvan Breukelen, RikPapadodimas, KyriakosQuantum teleportation through time-shifted AdS wormholeshep-thParticle Physics - TheoryBased on the work of Gao-Jafferis-Wall and Maldacena-Stanford-Yang, we observe that the time-shifted thermofield states of two entangled CFTs can be made traversable by an appropriate coupling of the two CFTs, or alternatively by the application of a modified quantum teleportation protocol. This provides evidence for the smoothness of the horizon for a large class of entangled states related to the thermofield by time-translations. The smoothness of these states has some relevance for the firewall paradox and the proposal that some observables in quantum gravity may be state-dependent. We notice that quantum teleportation through these entangled states could be used in a laboratory setup to implement a “time-machine”, which allows the observer to travel far in the future.Based on the work of Gao-Jafferis-Wall and Maldacena-Stanford-Yang, we observe that the time-shifted thermofield states of two entangled CFTs can be made traversable by an appropriate coupling of the two CFTs, or alternatively by the application of a modified quantum teleportation protocol. This provides evidence for the smoothness of the horizon for a large class of entangled states related to the thermofield by time-translations. The smoothness of these states has some relevance for the firewall paradox and the proposal that some observables in quantum gravity may be state-dependent. We notice that quantum teleportation through these entangled states could be used in a laboratory setup to implement a time-machine, which allows the observer to travel far in the future.arXiv:1708.09370CERN-TH-2017-188oai:cds.cern.ch:22859872017-08-30
spellingShingle hep-th
Particle Physics - Theory
van Breukelen, Rik
Papadodimas, Kyriakos
Quantum teleportation through time-shifted AdS wormholes
title Quantum teleportation through time-shifted AdS wormholes
title_full Quantum teleportation through time-shifted AdS wormholes
title_fullStr Quantum teleportation through time-shifted AdS wormholes
title_full_unstemmed Quantum teleportation through time-shifted AdS wormholes
title_short Quantum teleportation through time-shifted AdS wormholes
title_sort quantum teleportation through time-shifted ads wormholes
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP08(2018)142
http://cds.cern.ch/record/2285987
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