Abstract

We propose a quantum memory for a single-photon wave packet in a superposition of two different colors, i.e., two different frequency components, using the electromagnetically induced transparency technique in a double-Λ system. We examine a specific configuration in which the two frequency components are able to exchange energy through a four-wave mixing process as they propagate, so the state of the incident photon is recovered periodically at certain positions in the medium. We investigate the propagation dynamics as a function of the relative phase between the coupling beams and the input single-photon frequency components. Moreover, by considering time-dependent coupling beams, we numerically simulate the storage and retrieval of a two-frequency-component single-photon qubit.

Authors
D. Viscor, M. Artoni, G. C. La Rocca, A. Zavatta, J. Mompart, i V. Ahufinger
Citation Key
PhysRevA.86.053827
COinS Data

Date Published
2015-04-10 11:15
DOI
10.1103/PhysRevA.86.053827
Pagination
053827
Publisher
American Physical Society
Reprint Edition
http://arxiv.org/abs/1301.3364
Journal
Phys. Rev. A
URL
http://link.aps.org/doi/10.1103/PhysRevA.86.053827
Volume
86
Year of Publication
2012