English

High-fidelity two-qubit quantum logic gates using trapped calcium-43 ions

Quantum Physics 2016-08-10 v1 Atomic Physics

Abstract

We study the speed/fidelity trade-off for a two-qubit phase gate implemented in 43^{43}Ca+^+ hyperfine trapped-ion qubits. We characterize various error sources contributing to the measured fidelity, allowing us to account for errors due to single-qubit state preparation, rotation and measurement (each at the 0.1%\sim0.1\% level), and to identify the leading sources of error in the two-qubit entangling operation. We achieve gate fidelities ranging between 97.1(2)%97.1(2)\% (for a gate time tg=3.8μt_g=3.8\mus) and 99.9(1)%99.9(1)\% (for tg=100μt_g=100\mus), representing respectively the fastest and lowest-error two-qubit gates reported between trapped-ion qubits by nearly an order of magnitude in each case.

Keywords

Cite

@article{arxiv.1406.5473,
  title  = {High-fidelity two-qubit quantum logic gates using trapped calcium-43 ions},
  author = {C. J. Ballance and T. P. Harty and N. M. Linke and D. M. Lucas},
  journal= {arXiv preprint arXiv:1406.5473},
  year   = {2016}
}

Comments

Preliminary report; more details to be given in a future version. 1 trap, 2 ions, 3 nines

R2 v1 2026-06-22T04:43:34.205Z