Quasichiral interactions between quantum emitters at the nanoscale
Downing, CA; Carreño, JCL; Laussy, FP; et al.Del Valle, E; Fernández-Domínguez, AI
Date: 7 February 2019
Journal
Physical Review Letters
Publisher
American Physical Society (APS)
Publisher DOI
Abstract
We present a combined classical and quantum electrodynamics description of the coupling between two circularly polarized quantum emitters held above a metal surface supporting surface plasmons. Depending on their position and their natural frequency, the emitter-emitter interactions evolve from being reciprocal to nonreciprocal, which ...
We present a combined classical and quantum electrodynamics description of the coupling between two circularly polarized quantum emitters held above a metal surface supporting surface plasmons. Depending on their position and their natural frequency, the emitter-emitter interactions evolve from being reciprocal to nonreciprocal, which makes the system a highly tunable platform for chiral coupling at the nanoscale. By relaxing the stringent material and geometrical constraints for chirality, we explore the interplay between coherent and dissipative coupling mechanisms in the system. Thus, we reveal a quasichiral regime in which its quantum optical properties are governed by its subradiant state, giving rise to extremely sharp spectral features and strong photon correlations.
Physics and Astronomy
Faculty of Environment, Science and Economy
Item views 0
Full item downloads 0