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Phys. Rev. A 77, 012323 (2008) [16 pages]

Characterization of electromagnetically-induced-transparency-based continuous-variable quantum memories

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G. Hétet, A. Peng, M. T. Johnsson, J. J. Hope, and P. K. Lam*
Australian Centre for Quantum-Atom Optics, Department of Physics, Australian National University, ACT 0200, Australia

Received 8 January 2007; published 18 January 2008

We present a quantum multimodal treatment describing electromagnetically induced transparency (EIT) as a mechanism for storing continuous-variable quantum information in light fields. Taking into account the atomic noise and decoherences of realistic experiments, we numerically model the propagation, storage, and readout of signals contained in the sideband amplitude and phase quadratures of a light pulse using phase space methods. An analytical treatment of the effects predicted by this model is then presented. Finally, we use quantum information benchmarks to examine the properties of the EIT-based memory and show the parameters needed to operate beyond the quantum limit.

© 2008 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevA.77.012323
DOI:
10.1103/PhysRevA.77.012323
PACS:
03.67.Lx, 42.50.Gy

*ping.lam@anu.edu.au