In recent years, quantum-dot (QD) semiconductor lasers attract significant interest in many practical applications due to their advantages such as high-power pulse generation because to the high gain efficiency. In this work, the pulse shape of an electrically pumped QD-laser under high current is analyzed. We find that the slow rise time of the pulsed pump may significantly affect the high intensity output pulse. It results in sharp power dropouts and deformation of the pulse profile. We address the effect to dynamical change of the phase-amplitude coupling in the proximity of the excited state (ES) threshold. Under 30ns pulse pumping, the output pulse shape strongly depends on pumping amplitude. At lower currents, which correspond to lasi...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
We investigate the nonlinear propagation of an ultra-short, 150 fs, optical pulse along the waveguid...
We present a numerical model for the analysis of the chirp dynamics of quantum-dot (QD) semiconducto...
In recent years, quantum-dot (QD) semiconductor lasers attract significant interest in many practica...
We examine the response of a pulse pumped quantum dot laser both experimentally and numerically. As ...
We study InGaAs QD laser operating simultaneously at ground (GS) and excited (ES) states under 30ns ...
We analyze the impact of slow intraband relaxation and strong carrier localization on the characteri...
Quantum dot lasers have been shown to have greatly enhanced stability in the feedback configuration ...
The stability properties of injection-current profiled quantum dot lasers are analyzed for broad are...
A turn on of a quantum dot (QD) semiconductor laser simultaneously operating at the ground state (GS...
We report on the simulation of passive mode locking (ML) in quantum dot (QD) two-section lasers via ...
We study numerically and experimentally the role of the injection current and reverse bias voltage o...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
We investigate the nonlinear propagation of an ultra-short, 150 fs, optical pulse along the waveguid...
We present a numerical model for the analysis of the chirp dynamics of quantum-dot (QD) semiconducto...
In recent years, quantum-dot (QD) semiconductor lasers attract significant interest in many practica...
We examine the response of a pulse pumped quantum dot laser both experimentally and numerically. As ...
We study InGaAs QD laser operating simultaneously at ground (GS) and excited (ES) states under 30ns ...
We analyze the impact of slow intraband relaxation and strong carrier localization on the characteri...
Quantum dot lasers have been shown to have greatly enhanced stability in the feedback configuration ...
The stability properties of injection-current profiled quantum dot lasers are analyzed for broad are...
A turn on of a quantum dot (QD) semiconductor laser simultaneously operating at the ground state (GS...
We report on the simulation of passive mode locking (ML) in quantum dot (QD) two-section lasers via ...
We study numerically and experimentally the role of the injection current and reverse bias voltage o...
We present a modified version of the multi-section delayed differential equation (MS-DDE) model, for...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
We investigate the nonlinear propagation of an ultra-short, 150 fs, optical pulse along the waveguid...
We present a numerical model for the analysis of the chirp dynamics of quantum-dot (QD) semiconducto...