English

Ion Trap Long-Range XY Model for Quantum State Transfer and Optimal Spatial Search

Quantum Physics 2023-06-16 v1

Abstract

Linear ion trap chains are a promising platform for quantum computation and simulation. The XY model with long-range interactions can be implemented with a single side-band Molmer-Sorensen scheme, giving interactions that decay as 1/rα1/r^\alpha, where α\alpha parameterises the interaction range. Lower α\alpha leads to longer range interactions, allowing faster long-range gate operations for quantum computing. However, decreasing α\alpha causes an increased generation of coherent phonons and appears to dephase the effective XY interaction model. We characterise and show how to correct for this effect completely, allowing lower α\alpha interactions to be coherently implemented. Ion trap chains are thus shown to be a viable platform for spatial quantum search in optimal O(N)O(\sqrt{N}) time, for NN ions. Finally, we introduce a O(N)O(\sqrt{N}) quantum state transfer protocol, with a qubit encoding that maintains a high fidelity.

Keywords

Cite

@article{arxiv.2206.13685,
  title  = {Ion Trap Long-Range XY Model for Quantum State Transfer and Optimal Spatial Search},
  author = {Dylan Lewis and Leonardo Banchi and Yi Hong Teoh and Rajibul Islam and Sougato Bose},
  journal= {arXiv preprint arXiv:2206.13685},
  year   = {2023}
}

Comments

17 pages, 10 figures

R2 v1 2026-06-24T12:06:11.598Z