We investigate the coupled dynamics of light and cold atoms in a unidirectional ring cavity, in the regime of low saturation and linear single-atom response. As the dispersive opto-mechanical coupling between light and the motional degrees of freedom of the atoms makes the dynamics nonlinear, we find that localized, nonlinearity-sustained and bistable structures can be encoded in the atomic density by means of appropriate control beam
We consider exciton polaritons in a semiconductor microcavity with a saturable absorber in the growt...
<p>The nonlinear interaction between light and atoms is an extensive field of study with a broad ran...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
Clouds of cold neutral atoms driven by a coherent light beam in a ring cavity exhibit self-structure...
We discuss the formation of optomechanical structures from the interaction between linear dielectric...
We review state-of-the-art theory and experiment of the motion of cold and ultracold atoms coupled t...
In this thesis we investigate the dynamics of cold atoms in optical cavities. We study how the scatt...
Optomechanical forces in a cloud of cold atoms under the action of a coherent beam of light lead to ...
We study a hybrid system formed from an optomechanical resonator and a cavity mode strongly coupled ...
A model of a Bose-Einstein condensate in a ring optical lattice with atomic dissipations applied at ...
We present an analysis of dispersive optical bistability in a system of cold atoms enclosed in a bid...
The recent concept of a dissipative optical soliton sheds new light for understanding the stability ...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
We derive a quantum master equation for a single mode excitation of a Bose-Einstein condensate by a...
We consider exciton polaritons in a semiconductor microcavity with a saturable absorber in the growt...
<p>The nonlinear interaction between light and atoms is an extensive field of study with a broad ran...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
Clouds of cold neutral atoms driven by a coherent light beam in a ring cavity exhibit self-structure...
We discuss the formation of optomechanical structures from the interaction between linear dielectric...
We review state-of-the-art theory and experiment of the motion of cold and ultracold atoms coupled t...
In this thesis we investigate the dynamics of cold atoms in optical cavities. We study how the scatt...
Optomechanical forces in a cloud of cold atoms under the action of a coherent beam of light lead to ...
We study a hybrid system formed from an optomechanical resonator and a cavity mode strongly coupled ...
A model of a Bose-Einstein condensate in a ring optical lattice with atomic dissipations applied at ...
We present an analysis of dispersive optical bistability in a system of cold atoms enclosed in a bid...
The recent concept of a dissipative optical soliton sheds new light for understanding the stability ...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
We derive a quantum master equation for a single mode excitation of a Bose-Einstein condensate by a...
We consider exciton polaritons in a semiconductor microcavity with a saturable absorber in the growt...
<p>The nonlinear interaction between light and atoms is an extensive field of study with a broad ran...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...