Topological spin phases of trapped Rydberg excitons in CuO
arXiv:1903.11951 · doi:10.1103/PhysRevLett.123.126801
Abstract
We study theoretically Rydberg excitons in one-dimensional chains of traps in CuO coupled via the van der Waals interaction. The triplet of optically active -shell states acts as an effective spin- and the interactions between the excitons are strongly spin-dependent. We predict that the system {has the} topological Haldane phase with the diluted antiferromagnetic order, long-range string correlations, and finite excitation gap. We also analyze the effect of the trap geometry and interactions anisotropy on the Rydberg exciton spin states and demonstrate that a rich spin phase diagram can be realized showing high tunability of the Rydberg exciton platform.
main text (5 pages, 4 figures) + supplement (5 pages, 5 figures)