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Notes on teleportation in an expanding space. (English) Zbl 1370.81023

Summary: We investigate the quantum teleportation between a conformal detector Alice and an inertial detector Bob in de Sitter space in two schemes, (i) one uses free scalar modes and (ii) one utilizes cavity to store qubit. We show that the fidelity of the teleportation is degraded for Bob in both cases. While the fidelity-loss is due to the Gibbons-Hawking effect associated with his cosmological horizon in the scheme (i), the entanglement decreases in the scheme (ii) because the ability to entangle the cavities is reduced by the spacetime curvature. With a cutoff at Planck-scale, comparing with the standard Bunch-Davies choice, we also show that the possible Planckian physics cause extra modifications to the fidelity of the teleportation protocol in both schemes.

MSC:

81P40 Quantum coherence, entanglement, quantum correlations
81Q35 Quantum mechanics on special spaces: manifolds, fractals, graphs, lattices

References:

[1] Strominger, A.; Vafa, C., Phys. Lett. B, 379, 99 (1996) · Zbl 1376.83026
[2] ʼt Hooft, G., Nucl. Phys. B, 335, 138 (1990)
[3] Peres, A.; Terno, D. R., Rev. Mod. Phys., 76, 93 (2004) · Zbl 1205.81050
[4] Fuentes-Schuller, I.; Mann, R. B., Phys. Rev. Lett., 95, 120404 (2005)
[5] Unruh, W. G., Phys. Rev. D, 14, 870 (1976)
[6] Martín-Martínez, E.; Garay, L. J.; León, J., Phys. Rev. D, 82, 064028 (2010)
[7] Lloyd, S., Phys. Rev. Lett., 96, 061302 (2006)
[8] Alsing, P. M.; Milburn, G. J., Phys. Rev. Lett., 91, 180404 (2003)
[9] Bennett, C. H.; Brassard, G.; Crépeau, C.; Jozsa, R.; Peres, A.; Wootters, W. K., Phys. Rev. Lett., 70, 1895 (1993) · Zbl 1051.81505
[10] Ge, X.-H.; Kim, S.-P., Class. Quantum Grav., 25, 075011 (2008) · Zbl 1194.83071
[11] Ge, X.-H.; Shen, Y.-G., Phys. Lett. B, 623, 141 (2005) · Zbl 1247.83087
[12] Klemm, D.; Vanzo, L., JCAP, 11, 006 (2004)
[13] Pegg, D. T.; Phillips, L. S.; Barnett, S. M., Phys. Rev. Lett., 81, 1604 (1998)
[14] Gibbons, G. W.; Hawking, S. W., Phys. Rev. D, 15, 2738 (1977)
[15] Shiu, G., J. Phys.: Conf. Ser., 18, 188 (2005)
[16] Schutzhold, R.; Unruh, W. G.
[17] Schalm, K.; Shiu, G.; van der Schaar, J. P., J. High Energy Phys., 0404, 076 (2004)
[18] Allen, B., Phys. Rev. D, 32, 3136 (1985)
[19] Greene, B.; Parikh, M.; van der Schaar, J., J. High Energy Phys., 0604, 057 (2006)
[20] Kok, P.; Munro, W. J.; Nemoto, K.; Ralph, T. C.; Dowling, J. P.; Milburn, G. J., Rev. Mod. Phys., 79, 135 (2007)
[21] Bousso, R.; Maloney, A.; Strominger, A., Phys. Rev. D, 65, 104039 (2002)
[22] Levin, O.; Peleg, Y.; Peres, A., J. Phys. A., 25, 6471 (1992)
[23] Browne, D. E.; Plenio, M. B., Phys. Rev. A, 67, 012325 (2003)
[24] Downes, T. G.; Fuentes, I.; Ralph, T. C., Phys. Rev. Lett., 106, 210502 (2011)
[25] Martín-Martínez, E.; Menicucci, N. C., Class. Quantum Grav., 29, 224003 (2012) · Zbl 1266.83004
[26] Menicucci, N.; Olsen, S.; Milburn, G., New J. Phys., 12, 095019 (2010)
[27] Cirac, J. I.; Parkins, A. S.; Blatt, R.; Zoller, P., Phys. Rev. Lett., 70, 556 (1993)
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