Electromagnetically-induced transparency and light storing are studied in the case of a medium of atoms in a double Lambda configuration, both in terms of dark- and bright-state polatitons and atomic susceptibility. It is proven that the medium can be made transparent simultaneously for two pulses following their self-adjusting so that a condition for an adiabatic evolution has become fulfilled. Analytic formulas are given for the shapes and phases of the transmitted/stored pulses. The level of transparency can be regulated by adjusting the heights and phases of the control fields
We theoretically investigate the features of two-photon absorption in a five-level atomic system wit...
Shape-preserving adiabatic propagation of electromagnetic pulses, often termed adiabatons, in threel...
We experimentally demonstrate electromagnetically induced transparency and light storage with ultrac...
Three-level atomic and molecular systems coupled to two laser fields exhibit transparency effects th...
We examine in detail an alternative method of retrieving the information written into an atomic ense...
We present a detailed theoretical description of the generation of stationary light pulses by standi...
Storing and perpendicular retrieving of light pulses in electromagnetically induced transparency med...
This paper reviews recent efforts to realize a high-efficiency memory for optical pulses using slow ...
The influence of a phase-modulated control field on the phenomenon of electromagnetically induced tr...
According to our work, we assert that the dynamics of electromagnetically induced transparency in la...
[[abstract]] Electromagnetically induced transparency (EIT) is a quantum interference mechanism to ...
Abstract: We identify form-stable coupled excitations of light and matter ("dark-state polaritons") ...
Electromagnetically induced transparency(1-3) is a quantum interference effect that permits the prop...
[[abstract]]We have experimentally studied the propagation behaviors of light pulses in an electroma...
We analyze the two-photon linewidth of the recently proposed adiabatic transfer technique for ``stop...
We theoretically investigate the features of two-photon absorption in a five-level atomic system wit...
Shape-preserving adiabatic propagation of electromagnetic pulses, often termed adiabatons, in threel...
We experimentally demonstrate electromagnetically induced transparency and light storage with ultrac...
Three-level atomic and molecular systems coupled to two laser fields exhibit transparency effects th...
We examine in detail an alternative method of retrieving the information written into an atomic ense...
We present a detailed theoretical description of the generation of stationary light pulses by standi...
Storing and perpendicular retrieving of light pulses in electromagnetically induced transparency med...
This paper reviews recent efforts to realize a high-efficiency memory for optical pulses using slow ...
The influence of a phase-modulated control field on the phenomenon of electromagnetically induced tr...
According to our work, we assert that the dynamics of electromagnetically induced transparency in la...
[[abstract]] Electromagnetically induced transparency (EIT) is a quantum interference mechanism to ...
Abstract: We identify form-stable coupled excitations of light and matter ("dark-state polaritons") ...
Electromagnetically induced transparency(1-3) is a quantum interference effect that permits the prop...
[[abstract]]We have experimentally studied the propagation behaviors of light pulses in an electroma...
We analyze the two-photon linewidth of the recently proposed adiabatic transfer technique for ``stop...
We theoretically investigate the features of two-photon absorption in a five-level atomic system wit...
Shape-preserving adiabatic propagation of electromagnetic pulses, often termed adiabatons, in threel...
We experimentally demonstrate electromagnetically induced transparency and light storage with ultrac...