Using a simple model of a ring cavity comprising a cubically nonlinear medium, we analyze dispersive optical bistability in the presence of more than one spectral component. We show the phenomenon of so-called competition for resonance. In addition to presenting cavity characteristics for the cases of two and three different frequencies, we also discuss the general method for finding steady-state solutions and checking their stability. A simple and efficient algorithm, based on a relaxation method, is devised to find steady-state solutions satisfying appropriate boundary conditions. The relaxation dynamics is physically related to a finite response time of the medium
A time-independent theoretical and numerical analysis of an optical bistable model of two-level ato...
We study wave scattering in different nonlinear media possessing a natural forbidden band gap. In pa...
Optical bistability occurs when the effects of nonlinear behaviour of materials cause hysteresis in ...
In this paper, we investigate the nonlinear dynamical behavior of dispersive optical bistability (OB...
Passive fiber cavities are basic nonlinear optical systems that are described by simple models - how...
The models of dispersive optical bistability in unidirectional ring cavity yield transmitted intensi...
We find instabilities and self-pulsation in an optical ring cavity with a photorefractive two-wave m...
The optical behavior of a four-level system in a ring cavity driven by two coherent laser fields is ...
The analysis of experiments on bistability and instability in nonlinear optical resonators depends c...
A novel type of optical bistable configuration, namely the so-called double-ring (DR) device, is pre...
We address a two-level system in an environment interacting with an electromagnetic field in the dip...
The purpose of this work is to study the behavior of atomic fluctuations and the spectrum of transmi...
The notion of excitability originally comes from biology [1]-[3] and chemistry [4]. Using the langua...
Instabilities in the nearest side-modes are predicted for dispersive optical bistability in a nonide...
A stability analysis is performed for optical bistability in a Fabry-Perot cavity with mirrors of ar...
A time-independent theoretical and numerical analysis of an optical bistable model of two-level ato...
We study wave scattering in different nonlinear media possessing a natural forbidden band gap. In pa...
Optical bistability occurs when the effects of nonlinear behaviour of materials cause hysteresis in ...
In this paper, we investigate the nonlinear dynamical behavior of dispersive optical bistability (OB...
Passive fiber cavities are basic nonlinear optical systems that are described by simple models - how...
The models of dispersive optical bistability in unidirectional ring cavity yield transmitted intensi...
We find instabilities and self-pulsation in an optical ring cavity with a photorefractive two-wave m...
The optical behavior of a four-level system in a ring cavity driven by two coherent laser fields is ...
The analysis of experiments on bistability and instability in nonlinear optical resonators depends c...
A novel type of optical bistable configuration, namely the so-called double-ring (DR) device, is pre...
We address a two-level system in an environment interacting with an electromagnetic field in the dip...
The purpose of this work is to study the behavior of atomic fluctuations and the spectrum of transmi...
The notion of excitability originally comes from biology [1]-[3] and chemistry [4]. Using the langua...
Instabilities in the nearest side-modes are predicted for dispersive optical bistability in a nonide...
A stability analysis is performed for optical bistability in a Fabry-Perot cavity with mirrors of ar...
A time-independent theoretical and numerical analysis of an optical bistable model of two-level ato...
We study wave scattering in different nonlinear media possessing a natural forbidden band gap. In pa...
Optical bistability occurs when the effects of nonlinear behaviour of materials cause hysteresis in ...