quantum computing

Robust Nonperturbative Trapped-Ion Quantum Logic

arXiv:2607.13166

summary

The paper proposes optimized driving schemes that exploit anharmonic motional dynamics to implement fast, high-fidelity entangling gates for trapped-ion qubits, while enhancing robustness against system imperfections.

Abstract

Entangling gates of trapped ions are typically mediated by collective motional degrees of freedom. Weak coupling between qubit and motional degrees of freedom and the resulting harmonic dynamics give access to a broad range of gate schemes, but also impose strict limitations on achievable gate times. In this paper, we devise optimally designed driving schemes for the realization of fast, high-fidelity entangling gates mediated by anharmonic dynamics. The driving can also be optimized to achieve resilience to multiple system imperfections, and the anharmonicity in the motional dynamics can be used to enhance such resilience.

Topics & keywords

#trapped ions#entangling gates#anharmonic dynamics#quantum control#robustnessentangling gatetrapped-ionanharmonic motionoptimal controlgate fidelityerror resilience
Robust Nonperturbative Trapped-Ion Quantum Logic · wovepaper