Atoms, propagating across a detuned standing laser wave, can be scattered in a chaotic way even in the absence of spontaneous emission and any modulation of the laser field. Spontaneous emission masks the effect in some degree, but the Monte Carlo simulation shows that it can be observed in real experiments by the absorption imaging method or depositing atoms on a substrate. The effect of chaotic scattering is explained by a specific behavior of the dipole moments of atoms crossing the field nodes and is shown to depend strongly on the value of the atom-laser detuning
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
We have studied the interplay between disorder and cooperative scattering for the single scattering ...
The dynamical behavior of an atom interacting with a coherent field and a chaotic field is studied. ...
The dynamical behavior of an atom interacting with a coherent field and a chaotic field is studied. ...
We consider dissipative dynamics of atoms in a strong standing laser wave and find a nonlinear dynam...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
We use a recently developed model for the interaction of a two-level atom with a coherent and a chao...
The origin of the chaotic bunching effect is studied from a theoretical point of view. With this in ...
The origin of the chaotic bunching effect is studied from a theoretical point of view. With this in ...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
We have studied the interplay between disorder and cooperative scattering for the single scattering ...
We study the effect of noise on the quantum nonlinear motion of a two-level atom in a laser standing...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
We have studied the interplay between disorder and cooperative scattering for the single scattering ...
The dynamical behavior of an atom interacting with a coherent field and a chaotic field is studied. ...
The dynamical behavior of an atom interacting with a coherent field and a chaotic field is studied. ...
We consider dissipative dynamics of atoms in a strong standing laser wave and find a nonlinear dynam...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
Cold rubidium atoms are subjected to an amplitude-modulated far-detuned standing wave of light to fo...
We use a recently developed model for the interaction of a two-level atom with a coherent and a chao...
The origin of the chaotic bunching effect is studied from a theoretical point of view. With this in ...
The origin of the chaotic bunching effect is studied from a theoretical point of view. With this in ...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
We have studied the interplay between disorder and cooperative scattering for the single scattering ...
We study the effect of noise on the quantum nonlinear motion of a two-level atom in a laser standing...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
The scattering of atoms by a resonance standing light wave is considered under conditions when the l...
We have studied the interplay between disorder and cooperative scattering for the single scattering ...