Teleportation of Accelerated Information
arXiv:1206.3784 · doi:10.1364/JOSAB.30.000233
Abstract
A theoretical quantum teleportation protocal is suggested to teleport accelerated and non-accelerated information over different classes of accelerated quantum channels. For the accelerated information, it is shown that the fidelity of the teleported state increases as the entanglement of the initial quantum channel increases. However as the difference between the accelerated channel and the accelerated information decreases the fidelity increases. The fidelity of the non accelerated information increases as the entanglement of the initial quantum channel increases, while the accelerations of the quantum channel has a little effect. The possibility of sending quantum information over accelerated quantum channels is much better than sending classical information.
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Cited by in corpus (9)
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- Enhancing entanglement, local and non-local information of accelerated two-qubit and two- qutrit systems via weak-reverse measurements
- Quantum coding in non-inertial frames
- Memory effect on the bidirectional teleportation
- Teleportation with Multiple Accelerated Partners
- Frozen accelerated information via local operations
- Fisher information of accelerated two-qubit system in the presence of the color and white noise channels
- Some Properties of Multi-Qubit States in Non-Inertial Frames