A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling wave) models is used for a description of dynamics in individual semiconductor lasers, various multisection semiconductor lasers, and coupled laser systems. Consequent modifications of the basic traveling wave model allow for taking into account different physical effects such as the gain dispersion, the thermal detuning, the spatial hole burning of carriers, the nonlinear gain saturation, or various carrier exchange processes in quantum dot lasers. For illustration, the model was applied for simulations of dynamics in complex ring laser with four branches of filtered feedback. Finally, several advanced techniques for model analysis such as...
We investigate the dynamics of a multi-section laser resembling a delayed feedback experiment where ...
We analyze the general features of the formation and interaction of transverse traveling waves and t...
We investigate the dynamics of a multisection laser implementing a delayed optical feedback experime...
A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling...
This chapter introduces a hierarchy of Traveling wave (TW) models describing nonlinear dynamics in i...
Traveling wave equations are used to model the dynamics of multisection semiconductor lasers. To per...
We use the traveling wave model for simulating and analyzing nonlinear dynamics of complex semicondu...
The traveling wave model consisting of a hyperbolic system of linear first order PDE’s nonlinearly c...
Nonlinear dynamical effects of a multi-section DFB semiconductor laser such as self-pulsations or hy...
We use the traveling wave model for simulating and analyzing nonlinear dynamics of multisection ring...
The traveling-wave model is a popular tool for investigating longitudinal dynamical effects in semic...
We analyze the dynamics of a mode-locked quantum-dot edge-emitting semiconductor laser consisting of...
We use the traveling wave model for simulating and analyzing nonlinear dynamics of complex semicondu...
We simulate and analyse a 1D-PDE model describing the dynamics of multisection semiconductor lasers....
Nonlinear dynamical effects of a multi-section DFB semiconductor laser such as self-pulsations or hy...
We investigate the dynamics of a multi-section laser resembling a delayed feedback experiment where ...
We analyze the general features of the formation and interaction of transverse traveling waves and t...
We investigate the dynamics of a multisection laser implementing a delayed optical feedback experime...
A hierarchy of 1 (time) + 1 (space) dimensional first-order partial differential equation (traveling...
This chapter introduces a hierarchy of Traveling wave (TW) models describing nonlinear dynamics in i...
Traveling wave equations are used to model the dynamics of multisection semiconductor lasers. To per...
We use the traveling wave model for simulating and analyzing nonlinear dynamics of complex semicondu...
The traveling wave model consisting of a hyperbolic system of linear first order PDE’s nonlinearly c...
Nonlinear dynamical effects of a multi-section DFB semiconductor laser such as self-pulsations or hy...
We use the traveling wave model for simulating and analyzing nonlinear dynamics of multisection ring...
The traveling-wave model is a popular tool for investigating longitudinal dynamical effects in semic...
We analyze the dynamics of a mode-locked quantum-dot edge-emitting semiconductor laser consisting of...
We use the traveling wave model for simulating and analyzing nonlinear dynamics of complex semicondu...
We simulate and analyse a 1D-PDE model describing the dynamics of multisection semiconductor lasers....
Nonlinear dynamical effects of a multi-section DFB semiconductor laser such as self-pulsations or hy...
We investigate the dynamics of a multi-section laser resembling a delayed feedback experiment where ...
We analyze the general features of the formation and interaction of transverse traveling waves and t...
We investigate the dynamics of a multisection laser implementing a delayed optical feedback experime...