Quantum Simulation of Spin Models on an Arbitrary Lattice with Trapped Ions
Quantum Physics
2015-06-03 v1
Abstract
A collection of trapped atomic ions represents one of the most attractive platforms for the quantum simulation of interacting spin networks and quantum magnetism. Spin-dependent optical dipole forces applied to an ion crystal create long-range effective spin-spin interactions and allow the simulation of spin Hamiltonians that possess nontrivial phases and dynamics. Here we show how appropriate design of laser fields can provide for arbitrary multidimensional spin-spin interaction graphs even for the case of a linear spatial array of ions. This scheme uses currently existing trap technology and is scalable to levels where classical methods of simulation are intractable.
Cite
@article{arxiv.1201.0776,
title = {Quantum Simulation of Spin Models on an Arbitrary Lattice with Trapped Ions},
author = {Simcha Korenblit and Dvir Kafri and Wess C. Campbell and Rajibul Islam and Emily E. Edwards and Zhe-Xuan Gong and Guin-Dar Lin and Luming Duan and Jungsang Kim and Kihwan Kim and Chris Monroe},
journal= {arXiv preprint arXiv:1201.0776},
year = {2015}
}
Comments
5 pages, 4 figures