The optical behavior of a four-level system in a ring cavity driven by two coherent laser fields is studied. One laser field is treated as the incident field and the other the control field, respectively. It is found that there is optical transparency when the difference between the two frequency detunings of the incident and control fields from the corresponding atomic transition frequencies is zero. Optical bistability can be produced and controlled by increasing the magnitude of the frequency difference. The bistable hysteresis becomes larger when the frequency difference is increased. Further increase of the latter can lead to onset of multistability
We investigate conditions for the occurrence of a bistable response from a thin layer of an ensemble...
The models of dispersive optical bistability in unidirectional ring cavity yield transmitted intensi...
Optical Bistability: Controlling Light with Light focuses on optical bistability in nonlinear optica...
The phenomena of optical bistability and multistability are investigated for four-level at...
This book provides a comprehensive introduction to the theoretical and experimental studies of atomi...
The influence of spontaneously generated coherence and relative phase of laser fields on optical bis...
We demonstrate the application of electromagnetic-field-induced transparency and quantum interferenc...
We investigate the steady-state optical bistability behavior in a three-level A-type atomic system c...
Observations of optical bistability are reported for a system composed of multiple atomic beams pass...
We qualitatively show that hysteresis loops of intrinsic optical bistability phenomena without any a...
Instabilities in optical systems form a very rich and exciting field of work. A great deal of theore...
We investigate an optically pumped four-level laser in which both the laser and the pump form resona...
We analyze the behaviour of a coherent field driving a single mode optical cavity with one perfectly...
An experimental and theoretical study of optical multistability in a double resonator system formed ...
Since the first observation of optical bistability in 1976, a large number of investigations of this...
We investigate conditions for the occurrence of a bistable response from a thin layer of an ensemble...
The models of dispersive optical bistability in unidirectional ring cavity yield transmitted intensi...
Optical Bistability: Controlling Light with Light focuses on optical bistability in nonlinear optica...
The phenomena of optical bistability and multistability are investigated for four-level at...
This book provides a comprehensive introduction to the theoretical and experimental studies of atomi...
The influence of spontaneously generated coherence and relative phase of laser fields on optical bis...
We demonstrate the application of electromagnetic-field-induced transparency and quantum interferenc...
We investigate the steady-state optical bistability behavior in a three-level A-type atomic system c...
Observations of optical bistability are reported for a system composed of multiple atomic beams pass...
We qualitatively show that hysteresis loops of intrinsic optical bistability phenomena without any a...
Instabilities in optical systems form a very rich and exciting field of work. A great deal of theore...
We investigate an optically pumped four-level laser in which both the laser and the pump form resona...
We analyze the behaviour of a coherent field driving a single mode optical cavity with one perfectly...
An experimental and theoretical study of optical multistability in a double resonator system formed ...
Since the first observation of optical bistability in 1976, a large number of investigations of this...
We investigate conditions for the occurrence of a bistable response from a thin layer of an ensemble...
The models of dispersive optical bistability in unidirectional ring cavity yield transmitted intensi...
Optical Bistability: Controlling Light with Light focuses on optical bistability in nonlinear optica...