English

High-fidelity quantum state preparation using neighboring optimal control

Quantum Physics 2017-09-18 v1

Abstract

We present an approach to single-shot high-fidelity preparation of an nn-qubit state based on neighboring optimal control theory. This represents a new application of the neighboring optimal control formalism which was originally developed to produce single-shot high-fidelity quantum gates. To illustrate the approach, and to provide a proof-of-principle, we use it to prepare the two qubit Bell state β01=(1/2)[01+10]|\beta_{01}\rangle = (1/\sqrt{2})\left[\, |01\rangle + |10\rangle\,\right] with an error probability ϵ106\epsilon\sim 10^{-6} (10510^{-5}) for ideal (non-ideal) control. Using standard methods in the literature, these high-fidelity Bell states can be leveraged to fault-tolerantly prepare the logical state β01|\overline{\beta}_{01}\rangle.

Cite

@article{arxiv.1709.05279,
  title  = {High-fidelity quantum state preparation using neighboring optimal control},
  author = {Yuchen Peng and Frank Gaitan},
  journal= {arXiv preprint arXiv:1709.05279},
  year   = {2017}
}

Comments

16 pages, 1 figure, 9 tables, all MATLAB files used in numerical computations included

R2 v1 2026-06-22T21:44:35.622Z