Atom-field dressed states in slow-light waveguide QED
Abstract
We discuss the properties of atom-photon bound states in waveguide QED systems consisting of single or multiple atoms coupled strongly to a finite-bandwidth photonic channel. Such bound states are formed by an atom and a localized photonic excitation and represent the continuum analog of the familiar dressed states in single-mode cavity QED. Here we present a detailed analysis of the linear and nonlinear spectral features associated with single- and multi-photon dressed states and show how the formation of bound states affects the waveguide-mediated dipole-dipole interactions between separated atoms. Our results provide a both qualitative and quantitative description of the essential strong-coupling processes in waveguide QED systems, which are currently being developed in the optical and the microwave regime.
Keywords
Cite
@article{arxiv.1512.04946,
title = {Atom-field dressed states in slow-light waveguide QED},
author = {Giuseppe Calajo and Francesco Ciccarello and Darrick Chang and Peter Rabl},
journal= {arXiv preprint arXiv:1512.04946},
year = {2016}
}
Comments
17 pages, 12 figures