Remote state preparation and teleportation in phase space
Abstract
Continuous variable remote state preparation and teleportation are analyzed using Wigner functions in phase space. We suggest a remote squeezed state preparation scheme between two parties sharing an entangled twin beam, where homodyne detection on one beam is used as a conditional source of squeezing for the other beam. The scheme works also with noisy measurements, and provide squeezing if the homodyne quantum efficiency is larger than 50%. Phase space approach is shown to provide a convenient framework to describe teleportation as a generalized conditional measurement, and to evaluate relevant degrading effects, such the finite amount of entanglement, the losses along the line, and the nonunit quantum efficiency at the sender location.
Cite
@article{arxiv.quant-ph/0209168,
title = {Remote state preparation and teleportation in phase space},
author = {Matteo G. A. Paris and Mary Cola and Rodolfo Bonifacio},
journal= {arXiv preprint arXiv:quant-ph/0209168},
year = {2009}
}
Comments
2 figures, revised version to appear in J.Opt.B