We study the resonance fluorescence from two interacting atoms driven by a squeezed vacuum field and show that this system produces an interference pattern with a dark center. We discuss the role of the interatomic interactions in this process and find that the interference pattern results from an unequal population of the symmetric and antisymmetric states of the two-atom system. We also identify intrinsically nonclassical effects versus classical squeezed field effects, (C) 1998 Elsevier Science B.V. All rights reserved
We calculate the stationary state of the system of two non-identical two-level atoms driven by a fin...
We analyze the pairwise atomic states that are produced when a system of two atoms is irradiated by ...
Resonance fluorescence of two two-level atoms driven by a coherent laser field propagating parallel ...
We study the resonance fluorescence from two interacting atoms driven by a squeezed vacuum field and...
In a recent paper Meyer and Yeoman [Phys. Rev. Lett. 79, 2650 (1997)] have shown that the resonance ...
The authors investigate the dipole-dipole interaction role in the resonance fluorescence of two iden...
We present analytical and numerical results for resonance fluorescence produced by a two-level atom ...
The resonance fluorescence of a two-level atom driven by a coherent laser field and damped by a fini...
We examine squeezing properties of resonance fluorescence from two interacting atoms. Previous theor...
The squeezing properties of the fluorescence field emitted by a two-level atom driven by a coherent ...
We study the effect of a broadband squeezed vacuum on the dynamics of a two-atom system driven by a ...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
This thesis begins with a consideration of the two-level atom driven by a coherent field without the...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
Abstract. It is shown that when a monochromatic laser couples a single atomic ground level to two cl...
We calculate the stationary state of the system of two non-identical two-level atoms driven by a fin...
We analyze the pairwise atomic states that are produced when a system of two atoms is irradiated by ...
Resonance fluorescence of two two-level atoms driven by a coherent laser field propagating parallel ...
We study the resonance fluorescence from two interacting atoms driven by a squeezed vacuum field and...
In a recent paper Meyer and Yeoman [Phys. Rev. Lett. 79, 2650 (1997)] have shown that the resonance ...
The authors investigate the dipole-dipole interaction role in the resonance fluorescence of two iden...
We present analytical and numerical results for resonance fluorescence produced by a two-level atom ...
The resonance fluorescence of a two-level atom driven by a coherent laser field and damped by a fini...
We examine squeezing properties of resonance fluorescence from two interacting atoms. Previous theor...
The squeezing properties of the fluorescence field emitted by a two-level atom driven by a coherent ...
We study the effect of a broadband squeezed vacuum on the dynamics of a two-atom system driven by a ...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
This thesis begins with a consideration of the two-level atom driven by a coherent field without the...
We investigate the resonance dipole-dipole interaction energy between two identical atoms, one in th...
Abstract. It is shown that when a monochromatic laser couples a single atomic ground level to two cl...
We calculate the stationary state of the system of two non-identical two-level atoms driven by a fin...
We analyze the pairwise atomic states that are produced when a system of two atoms is irradiated by ...
Resonance fluorescence of two two-level atoms driven by a coherent laser field propagating parallel ...