Entanglement and quantum teleportation under superposed gravitational fields

Author:

Li Yue,Zhang BaochengORCID,You Li

Abstract

Abstract The influence of gravitational field on entanglement of bipartite states is investigated based on the recent idea of superposition states of gravitational field. Different from earlier considerations, we study the case where the gravitational field cannot be separated unitarily from the bipartite system in the final stage of the interaction. When the different gravitational field states are orthogonal, entanglement cannot be generated for an initial product state. If the different gravitational field states are non-orthogonal, entanglement can be generated and the amount of generated entanglement depends on an overlap parameter between different gravitational field states. The influence of gravitational field on the transfer of the state through quantum teleportation is also studied, which might lead to an observable effect since the quantum teleportation can be performed using macroscopic object.

Funder

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference38 articles.

1. Quantum entanglement;Horodecki;Rev. Mod. Phys.,2009

2. Gravitational decoherence;Bassi;Class. Quantum Grav.,2017

3. Is quantum gravity necessary?;Carlip;Class. Quantum Grav.,2008

4. Quantum mechanics of black holes;Witten;Science,2012

5. From B-modes to quantum gravity and unification of forces;Krauss;Int. J. Mod. Phys. D,2014

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