High-fidelity quantum state preparation using neighboring optimal control
arXiv:1709.05279 · doi:10.1007/s11128-017-1715-7
Abstract
We present an approach to single-shot high-fidelity preparation of an -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 with an error probability () 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 .
16 pages, 1 figure, 9 tables, all MATLAB files used in numerical computations included