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We analyse the evolution of the entanglement of a non-trivial initial quantum field state (which, for simplicity, has been taken to be a bipartite state made out of vacuum and the first excited state) when it undergoes a gravitational collapse.
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D. E. Bruschi, J. Louko, E. Martín-Martínez, A. Dragan, and I. Fuentes, “Unruh effect in quantum information beyond the single-mode approximation,” Phys. Rev. A 82
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E. Martín-Martínez, L. J. Garay, and J. León, “Unveiling quantum entanglement degradation near a Schwarzschild black hole,” Phys. Rev. D 82
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Cited in the paper.
D. E. Bruschi, I. Fuentes, and J. Louko, “Voyage to Alpha Centauri: Entanglement degradation of cavity modes due to motion,” Phys. Rev. D 85
2012
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N. Friis, D. E. Bruschi, J. Louko, and I. Fuentes, “Motion generates entanglement,” Phys. Rev. D 85
2012
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