We propose a computationally efficient approach for the simulation and design of index-guided quantum-dot (QD) passively mode-locked lasers with tapered gain section; the method is based on the combination of simulations based on a finite difference beam-propagation-method and dynamic simulations of mode-locking via a multi-section delayed differential equation model. The impact of varying the taper full angle on the pulse duration and peak power is investigated; simulations show that a correct choice of this parameter enables the generation of sub-picosecond optical pulses with peak power exceeding 5
The performance optimization of monolithic two-section passively mode-locked quantum-dot lasers is i...
We predict the onset of leading and trailing edge instabilities in the optical pulse train of monoli...
We present a systematic investigation of the passively mode-locked (ML) quantum dot lasers using a F...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
We report on the simulation of passive mode locking (ML) in quantum dot (QD) two-section lasers via ...
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We study numerically and experimentally the role of the injection current and reverse bias voltage o...
A dynamic model of passive mode-locking in quantum-dot laser diodes is presented. It is found that i...
We present a detailed quantitative comparison between a finite-difference traveling wave (FDTW) mode...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
We report picosecond pulse generation with high peak power in the range of 3.6 W from monolithic pas...
The dynamical regimes and performance optimization of quantum dot monolithic passively mode-locked l...
We report on the development of a new generation of high-power ultrashort pulse quantum-dot lasers w...
We propose a model for passive mode locking in quantum dot lasers and report on specific dynamical p...
The performance optimization of monolithic two-section passively mode-locked quantum-dot lasers is i...
We predict the onset of leading and trailing edge instabilities in the optical pulse train of monoli...
We present a systematic investigation of the passively mode-locked (ML) quantum dot lasers using a F...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
We propose a computationally efficient approach for the simulation and design of index-guided quantu...
We report on the simulation of passive mode locking (ML) in quantum dot (QD) two-section lasers via ...
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We study numerically and experimentally the role of the injection current and reverse bias voltage o...
A dynamic model of passive mode-locking in quantum-dot laser diodes is presented. It is found that i...
We present a detailed quantitative comparison between a finite-difference traveling wave (FDTW) mode...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
We report picosecond pulse generation with high peak power in the range of 3.6 W from monolithic pas...
The dynamical regimes and performance optimization of quantum dot monolithic passively mode-locked l...
We report on the development of a new generation of high-power ultrashort pulse quantum-dot lasers w...
We propose a model for passive mode locking in quantum dot lasers and report on specific dynamical p...
The performance optimization of monolithic two-section passively mode-locked quantum-dot lasers is i...
We predict the onset of leading and trailing edge instabilities in the optical pulse train of monoli...
We present a systematic investigation of the passively mode-locked (ML) quantum dot lasers using a F...