We have theoretically investigated the phase shift of a probe field for a four-level atomic system interacting successively with two fields tuned near an EIT resonance of an atom, a microwave field, and a coupling field. It has been found that the phase of retrieved signal has been shifted due to the cross-phase modulation when the stored spin wave was disturbed by a microwave. Because of the low relaxation rates of the ground hyperfine state, our proposed technique can impart a large phase rotation onto the probe field with low absorption of retrieved field and very low intensity of the microwave field
The theory of angular momentum connects physical rotations and quantum spins together at a fundament...
We have investigated the optical responses of a microwave-mediated pump–probe laser-driven five-leve...
Author Institution: Department of Physics, University of Virginia, Charlottesville, VA 22904Exposing...
International audienceWe experimentally investigate and theoretically analyze the effect of microwav...
International audienceWe experimentally investigate and theoretically analyze the effect of microwav...
International audienceWe experimentally investigate and theoretically analyze the effect of microwav...
begin{wrapfigure}{l}{0pt} includegraphics[scale=0.38]{Energy_exchange.eps} caption{Electrons gaining...
An experimental investigation of a Microwave Optical Double Resonance (MODR) phenomenon is carried o...
In order to achieve the phase-sensitive probe gain without population inversion, we investigate a th...
begin{wrapfigure}{l}{0pt} includegraphics[scale=0.38]{Energy_exchange.eps} caption{Electrons gaining...
In this paper we consider the coherences that are produced in a photon (or spin) locking experiment ...
In a V-type three-level atomic system driven by a coherent field and a microwave field, we...
In this paper we consider the coherences that are produced in a photon (or spin) locking experiment ...
We study an ensemble of strongly coupled electrons under continuous microwave irradiation interactin...
We have studied the spin dynamics of microscopic permalloy rings at GHz frequencies. Increasing the ...
The theory of angular momentum connects physical rotations and quantum spins together at a fundament...
We have investigated the optical responses of a microwave-mediated pump–probe laser-driven five-leve...
Author Institution: Department of Physics, University of Virginia, Charlottesville, VA 22904Exposing...
International audienceWe experimentally investigate and theoretically analyze the effect of microwav...
International audienceWe experimentally investigate and theoretically analyze the effect of microwav...
International audienceWe experimentally investigate and theoretically analyze the effect of microwav...
begin{wrapfigure}{l}{0pt} includegraphics[scale=0.38]{Energy_exchange.eps} caption{Electrons gaining...
An experimental investigation of a Microwave Optical Double Resonance (MODR) phenomenon is carried o...
In order to achieve the phase-sensitive probe gain without population inversion, we investigate a th...
begin{wrapfigure}{l}{0pt} includegraphics[scale=0.38]{Energy_exchange.eps} caption{Electrons gaining...
In this paper we consider the coherences that are produced in a photon (or spin) locking experiment ...
In a V-type three-level atomic system driven by a coherent field and a microwave field, we...
In this paper we consider the coherences that are produced in a photon (or spin) locking experiment ...
We study an ensemble of strongly coupled electrons under continuous microwave irradiation interactin...
We have studied the spin dynamics of microscopic permalloy rings at GHz frequencies. Increasing the ...
The theory of angular momentum connects physical rotations and quantum spins together at a fundament...
We have investigated the optical responses of a microwave-mediated pump–probe laser-driven five-leve...
Author Institution: Department of Physics, University of Virginia, Charlottesville, VA 22904Exposing...