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Nonperturbative and non-Markovian F\'{o}rster-interaction in waveguiding systems

Authors :
Sproll, T.
Martens, Ch.
Schneider, M. P.
Intravaia, F.
Busch, K.
Publication Year :
2018

Abstract

An exact solution to the interaction between two emitters mediated by F\"{o}rster resonance energy transfer is presented. The system is comprised of a one-dimensional optical waveguide with two embedded two-level systems and is analyzed using a recently developed quantum-field theoretical approach. This exactly solvable model features several competing mechanisms that lead to a rich physical behavior such as, for instance, the possibility to change from an attractive to a repulsive interaction. Our nonperturbative analysis allows on very general grounds to describe the interaction as a truly non-Markovian phenomenon mediated by the atom-photon bound states of the system. These results are of direct relevance for energy or information transfer processes as well as for atom trapping more complex systems.<br />Comment: 5+2 pages, 4 figures

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1804.01703
Document Type :
Working Paper