As has been shown in recent Electromagnetically Induced Transparency (EIT) experiments a coherently prepared atomic media can be used to slow the group velocity of light to 10's of meters per second. We here prove by direct calculation that it should be possible to freeze the laser pulse, i.e. to bring it to a full stop, by choosing the experimental parameters properly
AbstractIt is shown that a low-density gas can be cooled by illuminating it with intense, quasi-mono...
We investigate theoretically the optical properties of an atomic gas that has been cooled by the las...
This dissertation presents a new scheme for cooling atoms by laser: the "velocity selective coherent...
Electromagnetically induced transparency(1-3) is a quantum interference effect that permits the prop...
In this thesis we study light-matter coherence phenomena related to the interaction of a coherent la...
This paper reviews recent efforts to realize a high-efficiency memory for optical pulses using slow ...
Three-level atomic and molecular systems coupled to two laser fields exhibit transparency effects th...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
This dissertation reports experimental studies of nonlinear optical effects manifested by electromag...
In this article, we experimentally demonstrate a way of controlling the group velocity of an optical...
The reduction in the group velocity of a light pulse due to a resonance is termed slow light. A velo...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
We investigate theoretically the slow group velocity of a pulse probe laser propagating through a co...
AbstractIt is shown that a low-density gas can be cooled by illuminating it with intense, quasi-mono...
We investigate theoretically the optical properties of an atomic gas that has been cooled by the las...
This dissertation presents a new scheme for cooling atoms by laser: the "velocity selective coherent...
Electromagnetically induced transparency(1-3) is a quantum interference effect that permits the prop...
In this thesis we study light-matter coherence phenomena related to the interaction of a coherent la...
This paper reviews recent efforts to realize a high-efficiency memory for optical pulses using slow ...
Three-level atomic and molecular systems coupled to two laser fields exhibit transparency effects th...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
This dissertation reports experimental studies of nonlinear optical effects manifested by electromag...
In this article, we experimentally demonstrate a way of controlling the group velocity of an optical...
The reduction in the group velocity of a light pulse due to a resonance is termed slow light. A velo...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
We investigate theoretically the slow group velocity of a pulse probe laser propagating through a co...
AbstractIt is shown that a low-density gas can be cooled by illuminating it with intense, quasi-mono...
We investigate theoretically the optical properties of an atomic gas that has been cooled by the las...
This dissertation presents a new scheme for cooling atoms by laser: the "velocity selective coherent...