On the basis of the results of numerical modeling, it is shown that dipole–dipole interactions among atoms in the active medium strongly influences the character of the associated superradiation. The main effect is to make the nuclear subsystem behave chaotically. Its strength increases with the atom density and leads to the suppression of distant collective correlations and superradiation. Near correlations between the atoms are established, causing a confinement effect: a shielding of radiation in the active medium
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
A theoretical analysis of absorptive optical bistability in a passive atomic medium and bidirectiona...
On the basis of the results of numerical modeling, it is shown that dipole-dipole interactions among...
On the basis of the results of numerical modeling, it is shown that dipole-dipole interactions among...
On the basis of the results of numerical modeling, it is shown that dipole-dipole interactions among...
The motion of a system of interacting nonlinear charged oscillators is investigated numerically. Bec...
The motion of a system of interacting nonlinear charged oscillators is investigated numerically. Bec...
Superradiance, known as the cooperative spontaneous emission of a directional light pulse by excited...
Superradiance, known as the cooperative spontaneous emission of a directional light pulse by excite...
We study how the radiative properties of a dense ensemble of atoms can be modified when they are pla...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
An analysis of cooperative atomic interaction in atom-field interaction is presented. A complete exa...
Oscillations of mainly surface character (S=0 modes) give rise, in atomic nuclei, to an attractive (...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
A theoretical analysis of absorptive optical bistability in a passive atomic medium and bidirectiona...
On the basis of the results of numerical modeling, it is shown that dipole-dipole interactions among...
On the basis of the results of numerical modeling, it is shown that dipole-dipole interactions among...
On the basis of the results of numerical modeling, it is shown that dipole-dipole interactions among...
The motion of a system of interacting nonlinear charged oscillators is investigated numerically. Bec...
The motion of a system of interacting nonlinear charged oscillators is investigated numerically. Bec...
Superradiance, known as the cooperative spontaneous emission of a directional light pulse by excited...
Superradiance, known as the cooperative spontaneous emission of a directional light pulse by excite...
We study how the radiative properties of a dense ensemble of atoms can be modified when they are pla...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
An analysis of cooperative atomic interaction in atom-field interaction is presented. A complete exa...
Oscillations of mainly surface character (S=0 modes) give rise, in atomic nuclei, to an attractive (...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
A theoretical analysis of absorptive optical bistability in a passive atomic medium and bidirectiona...