English

Multi-Mode Global Driving of Trapped Ions for Quantum Circuit Synthesis

Quantum Physics 2025-06-27 v2 Atomic Physics

Abstract

We study the use of global drives with multiple frequency components to improve the efficiency of trapped ion quantum simulations and computations. We show that such `multi-mode' global drives, when combined with a linear number of single-qubit rotations, generate universal Ising-type interactions with shorter overall runtimes than corresponding two-qubit gate implementations. Further, we show how this framework may be extended to efficiently generate nn-body interactions between any subset nn of the ion qubits. Finally, we apply these techniques to encode the Quantum Fourier Transform using quadratically-fewer entangling operations, with quadratically smaller runtime, compared with traditional approaches.

Keywords

Cite

@article{arxiv.2502.13302,
  title  = {Multi-Mode Global Driving of Trapped Ions for Quantum Circuit Synthesis},
  author = {Philip Richerme},
  journal= {arXiv preprint arXiv:2502.13302},
  year   = {2025}
}

Comments

23 pages, 10 figures