Coherent control of trapped ions using off-resonant lasers
Abstract
In this paper we develop a unified framework to study the coherent control of trapped ions subject to state-dependent forces. Taking different limits in our theory, we can reproduce two different designs of a two-qubit quantum gate --the pushing gate [1] and the fast gates based on laser pulses from Ref. [2]--, and propose a new design based on continuous laser beams. We demonstrate how to simulate Ising Hamiltonians in a many ions setup, and how to create highly entangled states and induce squeezing. Finally, in a detailed analysis we identify the physical limits of this technique and study the dependence of errors on the temperature. [1] J.I. Cirac, P. Zoller, Nature, 404, 579, 2000. [2] J.J. Garcia-Ripoll, P. Zoller, J.I. Cirac, PRL 67, 062318, 2003
Cite
@article{arxiv.quant-ph/0411103,
title = {Coherent control of trapped ions using off-resonant lasers},
author = {J. J. Garcia-Ripoll and P. Zoller and J. I. Cirac},
journal= {arXiv preprint arXiv:quant-ph/0411103},
year = {2007}
}