Pulse propagation dynamics in the presence of a continuous-wave field

We present theoretical results for the propagation dynamics of an electromagnetic field pulse through rubidium vapor, while another field, a continuous-wave electromagnetic field, is present. The frequencies of both electromagnetic fields are resonant with the transition between the ground and excit...

Full description

Saved in:
Bibliographic Details
Published inPhysica scripta Vol. T157; no. 1; pp. 14011 - 14014
Main Authors Dimitrijevi, Jelena, Arsenovi, Dušan, Jelenkovi, Branislav M
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.11.2013
Online AccessGet full text

Cover

Loading…
More Information
Summary:We present theoretical results for the propagation dynamics of an electromagnetic field pulse through rubidium vapor, while another field, a continuous-wave electromagnetic field, is present. The frequencies of both electromagnetic fields are resonant with the transition between the ground and excited state hyperfine levels of Rb, Fg → Fe = Fg ± 1. Detuning from resonance is done by the magnetic field oriented along the light propagation direction (Hanle configuration). When both the electromagnetic fields are simultaneously interacting with Rb atoms, either electromagnetically induced transparency or absorption is induced. Propagation dynamics was obtained solving the set of Maxwell-Bloch equations for the interacting atoms with two electromagnetic fields. Motivated by recent results (Brazhnikov et al 2011 Eur. Phys. J. D 63 315-25; Brazhnikov et al 2010 JETP Lett. 91 625-9; Kou et al 2011 Phys. Rev. A 84 063807), we have analyzed the influence of experimental parameters, laser polarization, and mutual phases between lasers, which can lead to optical switching, i.e. the transformation from electromagnetically induced absorption to transparency and vice versa.
ISSN:0031-8949
1402-4896
DOI:10.1088/0031-8949/2013/T157/014011