Using a density matrix approach, we study the simplest systems that display both gain and feedback: clusters of 2 to 5 atoms, one of which is pumped. The other atoms supply feedback through multiple scattering of light. We show that, if the atoms are in each other's near field, the system exhibits large gain narrowing and spectral mode redistribution. The observed phenomena are more pronounced if the feedback is enhanced. Our system is to our knowledge the simplest exactly solvable microscopic system which shows the approach to laser oscillation
We study the effect of a broadband squeezed vacuum on the dynamics of a two-atom system driven by a ...
A method of using feedback to control an atom laser was discussed. The feedback scheme required to c...
We investigate the evolution of a system of two-level atoms interacting with two counterpropagating ...
Using a density matrix approach, we study the simplest systems that display both gain and feedback: ...
Using a density matrix approach, we study the simplest systems that display both gain and feedback: ...
We present a semiclassical analysis of lasing with an injected signal in a system of cold two-level ...
A generalized method of using feedback to control multimode behavior in Bose-Einstein condensates is...
We consider a trapped two-level atom stimulated by a coherent monochromatic laser and we study how t...
There is currently a strong interest in mirrorless lasing systems(1), in which the electromagnetic f...
Conference PaperWe report on the study of two and multi-level atoms interacting with multiple laser ...
Elaborating versatile strategies for new lasing schemes is important for both fundamental research a...
<p>The nonlinear interaction between light and atoms is an extensive field of study with a broad ran...
Accepcted for publication by J. Opt. A for the special issue on nanolasers and random lasers (to be ...
We present a microscopic laser model for many atoms coupled to a single cavity mode, including the l...
We perform a comprehensive study of stability of a pumped atom laser in the presence of pumping, dam...
We study the effect of a broadband squeezed vacuum on the dynamics of a two-atom system driven by a ...
A method of using feedback to control an atom laser was discussed. The feedback scheme required to c...
We investigate the evolution of a system of two-level atoms interacting with two counterpropagating ...
Using a density matrix approach, we study the simplest systems that display both gain and feedback: ...
Using a density matrix approach, we study the simplest systems that display both gain and feedback: ...
We present a semiclassical analysis of lasing with an injected signal in a system of cold two-level ...
A generalized method of using feedback to control multimode behavior in Bose-Einstein condensates is...
We consider a trapped two-level atom stimulated by a coherent monochromatic laser and we study how t...
There is currently a strong interest in mirrorless lasing systems(1), in which the electromagnetic f...
Conference PaperWe report on the study of two and multi-level atoms interacting with multiple laser ...
Elaborating versatile strategies for new lasing schemes is important for both fundamental research a...
<p>The nonlinear interaction between light and atoms is an extensive field of study with a broad ran...
Accepcted for publication by J. Opt. A for the special issue on nanolasers and random lasers (to be ...
We present a microscopic laser model for many atoms coupled to a single cavity mode, including the l...
We perform a comprehensive study of stability of a pumped atom laser in the presence of pumping, dam...
We study the effect of a broadband squeezed vacuum on the dynamics of a two-atom system driven by a ...
A method of using feedback to control an atom laser was discussed. The feedback scheme required to c...
We investigate the evolution of a system of two-level atoms interacting with two counterpropagating ...