Topological spin models in Rydberg lattices
Abstract
We show that resonant dipole-dipole interactions between Rydberg atoms in a triangular lattice can give rise to artificial magnetic fields for spin excitations. We consider the coherent dipole-dipole coupling between and Rydberg states and derive an effective spin-1/2 Hamiltonian for the excitations. By breaking time-reversal symmetry via external fields we engineer complex hopping amplitudes for transitions between two rectangular sub-lattices. The phase of these hopping amplitudes depends on the direction of the hop. This gives rise to a staggered, artificial magnetic field which induces non-trivial topological effects. We calculate the single-particle band structure and investigate its Chern numbers as a function of the lattice parameters and the detuning between the two sub-lattices. We identify extended parameter regimes where the Chern number of the lowest band is or .
Cite
@article{arxiv.1609.02736,
title = {Topological spin models in Rydberg lattices},
author = {Martin Kiffner and Edward O'Brien and Dieter Jaksch},
journal= {arXiv preprint arXiv:1609.02736},
year = {2017}
}
Comments
10 pages, 7 figures