We derive equations for the strongly coupled system of light and dense atomic ensembles. The formalism includes an arbitrary internal-level structure for the atoms and is not restricted to weak excitation of atoms by light. In the low-light-intensity limit for atoms with a single electronic ground state, the full quantum field-theoretical representation of the model can be solved exactly by means of classical stochastic electrodynamics simulations for stationary atoms that represent cold atomic ensembles. Simulations for the optical response of atoms in a quantum degenerate regime require one to synthesize a stochastic ensemble of atomic positions that generates the corresponding quantum statistical position correlations between the atoms. ...
We calculate the intensity-field correlations in the light scattered by N cold atoms driven by a qua...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We derive equations for the strongly coupled system of light and dense atomic ensembles. The formali...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We observe a density-dependent collective suppression of optical pumping between the hyperfine groun...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We study the collective response of a dense atomic sample to light essentially exactly using classic...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
Understanding strong cooperative optical responses in dense and cold atomic ensembles is vital for f...
We calculate the intensity-field correlations in the light scattered by N cold atoms driven by a qua...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We derive equations for the strongly coupled system of light and dense atomic ensembles. The formali...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We observe a density-dependent collective suppression of optical pumping between the hyperfine groun...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We study the collective response of a dense atomic sample to light essentially exactly using classic...
We investigate the many-body dissipative dynamics of fermionic atoms in an optical lattice in the pr...
Understanding strong cooperative optical responses in dense and cold atomic ensembles is vital for f...
We calculate the intensity-field correlations in the light scattered by N cold atoms driven by a qua...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...