We study numerically and experimentally the role of the injection current and reverse bias voltage on the pulse stability of tapered, passively mode-locked, Quantum Dot (QD) lasers. By using a multi-section delayed differential equation and introducing in the model the QD inhomogenous broadening, we are able to predict the onset of leading and trailing edge instabilities in the emitted pulse trains and to identify specific trends of stability in dependence on the laser biasing conditions. The numerical results are confirmed experimentally trough amplitude and timing stability analysis of the pulses
We present a time-domain travelling-wave model for the simulation of passive mode-locking in quantum...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
In recent years, quantum-dot (QD) semiconductor lasers attract significant interest in many practica...
We predict the onset of leading and trailing edge instabilities in the optical pulse train of monoli...
We report on the simulation of passive mode locking (ML) in quantum dot (QD) two-section lasers via ...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
We consider a mode-locked (ML) quantum-dot (QD) edge-emitting semiconductor laser consisting of a re...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
The stability properties of injection-current profiled quantum dot lasers are analyzed for broad are...
We consider a mode-locked quantum-dot edge-emitting semiconductor laser consisting of a reverse bias...
Operation regimes of a two section monolithic quantum dot (QD) mode-locked laser are studied experim...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
We consider a mode-locked quantum-dot edge-emitting semiconductor laser consisting of a reverse bias...
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We propose a model for passive mode locking in quantum dot lasers and report on specific dynamical p...
We present a time-domain travelling-wave model for the simulation of passive mode-locking in quantum...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
In recent years, quantum-dot (QD) semiconductor lasers attract significant interest in many practica...
We predict the onset of leading and trailing edge instabilities in the optical pulse train of monoli...
We report on the simulation of passive mode locking (ML) in quantum dot (QD) two-section lasers via ...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
We consider a mode-locked (ML) quantum-dot (QD) edge-emitting semiconductor laser consisting of a re...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
The stability properties of injection-current profiled quantum dot lasers are analyzed for broad are...
We consider a mode-locked quantum-dot edge-emitting semiconductor laser consisting of a reverse bias...
Operation regimes of a two section monolithic quantum dot (QD) mode-locked laser are studied experim...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
We consider a mode-locked quantum-dot edge-emitting semiconductor laser consisting of a reverse bias...
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We propose a model for passive mode locking in quantum dot lasers and report on specific dynamical p...
We present a time-domain travelling-wave model for the simulation of passive mode-locking in quantum...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
In recent years, quantum-dot (QD) semiconductor lasers attract significant interest in many practica...