English

Squeezing the limit: Quantum benchmarks for the teleportation and storage of squeezed states

Quantum Physics 2009-11-13 v1

Abstract

We derive fidelity benchmarks for the quantum storage and teleportation of squeezed states of continuous variable systems, for input ensembles where the degree of squeezing ss is fixed, no information about its orientation in phase space is given, and the distribution of phase space displacements is a Gaussian. In the limit where the latter becomes flat, we prove analytically that the maximal classical achievable fidelity (which is 1/2 without squeezing, for s=1s=1) is given by s/(1+s)\sqrt{s}/(1+s), vanishing when the degree of squeezing diverges. For mixed states, as well as for general distributions of displacements, we reduce the determination of the benchmarks to the solution of a finite-dimensional semidefinite program, which yields accurate, certifiable bounds thanks to a rigorous analysis of the truncation error. This approach may be easily adapted to more general ensembles of input states.

Keywords

Cite

@article{arxiv.0808.2260,
  title  = {Squeezing the limit: Quantum benchmarks for the teleportation and storage of squeezed states},
  author = {M. Owari and M. B. Plenio and E. S. Polzik and A. Serafini and M. M. Wolf},
  journal= {arXiv preprint arXiv:0808.2260},
  year   = {2009}
}

Comments

19 pages, 4figures