English

Improved high-fidelity transport of trapped-ion qubits through a multi-dimensional array

Quantum Physics 2013-05-29 v1

Abstract

We have demonstrated transport of Be+ ions through a 2D Paul-trap array that incorporates an X-junction, while maintaining the ions near the motional ground-state of the confining potential well. We expand on the first report of the experiment [1], including a detailed discussion of how the transport potentials were calculated. Two main mechanisms that caused motional excitation during transport are explained, along with the methods used to mitigate such excitation. We reduced the motional excitation below the results in Ref. [1] by a factor of approximately 50. The effect of a mu-metal shield on qubit coherence is also reported. Finally, we examined a method for exchanging energy between multiple motional modes on the few-quanta level, which could be useful for cooling motional modes without directly accessing the modes with lasers. These results establish how trapped ions can be transported in a large-scale quantum processor with high fidelity.

Keywords

Cite

@article{arxiv.1106.5005,
  title  = {Improved high-fidelity transport of trapped-ion qubits through a multi-dimensional array},
  author = {R. B. Blakestad and C. Ospelkaus and A. P. VanDevender and J. H. Wesenberg and M. J. Biercuk and D. Leibfried and D. J. Wineland},
  journal= {arXiv preprint arXiv:1106.5005},
  year   = {2013}
}

Comments

16 pages

R2 v1 2026-06-21T18:27:18.569Z