Subradiant Dimer Excitations of Emitter Chains Coupled to a 1D Waveguide
arXiv:1908.01818 · doi:10.1103/PhysRevResearch.2.013173
Abstract
This Letter shows that chains of optical or microwave emitters coupled to a 1D waveguide support subradiant states with close pairs of excited emitters, which have longer lifetimes than even the most subradiant states with only a single excitation. Exact, analytical expressions for non-radiative excitation dimer states are obtained in the limit of infinite chains. To understand the mechanism underlying these states, we present a formal equivalence between subradiant dimers and single localized excitations around a chain defect (unoccupied site). Our analytical mapping permits extension to emitter chains coupled to the 3D free space vacuum field.
Main Text (6 pages, 4 figures) + Supplemental Material (4 pages, 5 figures)