English

Randomized benchmarking of single qubit gates in a 2D array of neutral atom qubits

Quantum Physics 2016-07-26 v3 Atomic Physics

Abstract

We characterize single qubit Clifford gate operations with randomized benchmarking in a 2D array of neutral atom qubits, and demonstrate global and site selected gates with high fidelity. An average fidelity of F2=0.9983(14)F^2=0.9983(14) is measured for global microwave driven gates applied to a 49 qubit array. Single site gates are implemented with a focused laser beam to Stark shift the microwaves into resonance at a selected site. At Stark selected single sites we observe F2=0.9923(7)F^2=0.9923(7) and an average spin flip crosstalk error at other sites of 0.002(9)0.002(9).

Keywords

Cite

@article{arxiv.1501.02041,
  title  = {Randomized benchmarking of single qubit gates in a 2D array of neutral atom qubits},
  author = {T. Xia and M. Lichtman and K. Maller and A. W. Carr and M. J. Piotrowicz and L. Isenhower and M. Saffman},
  journal= {arXiv preprint arXiv:1501.02041},
  year   = {2016}
}

Comments

5 figures, supplemental material, minor revisions to text regarding fault tolerance

R2 v1 2026-06-22T07:55:52.722Z