Sudden death of entanglement and teleportation fidelity loss via the Unruh effect
arXiv:0907.0485 · doi:10.1103/PhysRevA.80.032315
Abstract
We use the Unruh effect to investigate how the teleportation of quantum states is affected when one of the entangled qubits used in the process is under the influence of some external force. In order to reach a comprehensive understanding, a detailed analysis of the acceleration effect on such entangled qubit system is performed. In particular, we calculate the mutual information and concurrence between the two qubits and show that the latter has a ``sudden death" at a finite acceleration, whose value will depend on the time interval along which the detector is accelerated.
9 pages, 5 figures
References in corpus (8)
- The Unruh effect and its applications
- Alice falls into a black hole: Entanglement in non-inertial frames
- Entanglement of Dirac fields in non-inertial frames
- Quantum Entanglement of Moving Bodies
- Continuous variable entanglement sharing in non-inertial frames
- Loss of Spin Entanglement For Accelerated Electrons in Electric and Magnetic Fields
- Influence of detector motion in Bell inequalities with entangled fermions
- Comment on "Teleportation with a uniformly accelerated partner"
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