An analytical method based on a two-mode approximation is here developed to study the optical response of a periodically modulated medium of ultracold atoms driven into a regime of standing-wave electromagnetically induced transparency. A systematic comparison with the usual approach based on the coupled Maxwell-Liouville equations shows that our method is very accurate in the frequency region of interest. Our method, in particular, explains in a straightforward manner the formation of a well-developed photonic bandgap in the optical Bloch wave vector dispersion. For ultracold (87)Rb atoms nearly perfect reflectivity may be attained and a light pulse whose frequency components are contained within the gap is seen to be reflected with little...
Resonantly absorbing media supporting electromagnetically induced transparency may give rise to spec...
Summarization: We study the spontaneous emission, absorption, and dispersion properties of a Λ-type ...
We study the optical properties of an ensemble of two-level atoms coupled to a 1D photonic crystal w...
An analytical method based on a two-mode approximation is here developed to study the optical respon...
We develop a general scheme for studying the optical response of ultracold atoms driven into a regim...
In this chapter, we give a brief review of our recent research works on photonic bandgaps induced by...
The propagation of light through an ultracold atomic gas is the main topic of the present work. The...
The light wave propagating in a dispersive medium can be formularized as electromagnetic (EM) fields...
In a quantum system of arrayed two-level atoms interacting with light, the interacted (dressed) phot...
We illustrate a mechanism based on coherent optical nonlinearities to realize optically tunable phot...
We experimentally investigate the Bragg reflection of light at one-dimensionally ordered atomic stru...
International audienceWe experimentally study the photonic properties of a cold-atom sample trapped ...
This dissertation reports experimental studies of nonlinear optical effects manifested by electromag...
We have constructed a tapered magnetic atom guide that is integrated with a magneto-optical trap. We...
This research work aims to analyze light propagation in resonant cold atomic gas enviroment. When we...
Resonantly absorbing media supporting electromagnetically induced transparency may give rise to spec...
Summarization: We study the spontaneous emission, absorption, and dispersion properties of a Λ-type ...
We study the optical properties of an ensemble of two-level atoms coupled to a 1D photonic crystal w...
An analytical method based on a two-mode approximation is here developed to study the optical respon...
We develop a general scheme for studying the optical response of ultracold atoms driven into a regim...
In this chapter, we give a brief review of our recent research works on photonic bandgaps induced by...
The propagation of light through an ultracold atomic gas is the main topic of the present work. The...
The light wave propagating in a dispersive medium can be formularized as electromagnetic (EM) fields...
In a quantum system of arrayed two-level atoms interacting with light, the interacted (dressed) phot...
We illustrate a mechanism based on coherent optical nonlinearities to realize optically tunable phot...
We experimentally investigate the Bragg reflection of light at one-dimensionally ordered atomic stru...
International audienceWe experimentally study the photonic properties of a cold-atom sample trapped ...
This dissertation reports experimental studies of nonlinear optical effects manifested by electromag...
We have constructed a tapered magnetic atom guide that is integrated with a magneto-optical trap. We...
This research work aims to analyze light propagation in resonant cold atomic gas enviroment. When we...
Resonantly absorbing media supporting electromagnetically induced transparency may give rise to spec...
Summarization: We study the spontaneous emission, absorption, and dispersion properties of a Λ-type ...
We study the optical properties of an ensemble of two-level atoms coupled to a 1D photonic crystal w...