Entanglement Concentration with Quantum Non Demolition Hamiltonians
Abstract
We devise and examine two procrustean entanglement concentration schemes using Quantum Non- Demolition (QND) interaction Hamiltonians in the continuous variable regime, applicable for light, for atomic ensembles or in a hybrid setting. We thus expand the standard entanglement distillation toolbox to the use of a much more general, versatile and experimentally feasible interaction class. The first protocol uses Gaussian ancillary modes and a non-Gaussian post-measurement, the second a non-Gaussian ancillary mode and a Gaussian post-measurement. We explicitly calculate the density matrix elements of the non-Gaussian mixed states resulting from these protocols using an elegant Wigner-function based method in a numerically efficient manner. We then quantify the entanglement increase calculating the Logarithmic Negativity of the output state and discuss and compare the performance of the protocols.
Cite
@article{arxiv.1111.4557,
title = {Entanglement Concentration with Quantum Non Demolition Hamiltonians},
author = {Richard Tatham and Natalia Korolkova},
journal= {arXiv preprint arXiv:1111.4557},
year = {2011}
}
Comments
9 pages, 5 figures, submitted to Phys. Rev. A