The stability properties of injection-current profiled quantum dot lasers are analyzed for broad area devices of different length. In general, devices demonstrate stable output at low to moderate injection levels before the onset of filamentary dynamics at higher injection levels. By comparing devices of different lengths, the onset of filamentary dynamics is shown to coincide in each case with the onset of excited state lasing and so the loss in stability may be linked to the increased low frequency noise and phase-amplitude coupling that occurs in this regime. (c) 2007 Elsevier B.V. All rights reserved
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
International audienceWe analyze the influence of the excited states (ES) on the dynamics of optical...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
The stability properties of injection-current profiled quantum dot lasers are analyzed for broad are...
We study numerically and experimentally the role of the injection current and reverse bias voltage o...
The impact of injection current profiling on the spatial mode structure of quantum dot semiconductor...
Optical injection is a key nonlinear laser configuration both for applications and fundamental studi...
The response of an optically injected quantum-dot semiconductor laser (SL) is studied both experimen...
The response of an optically injected quantum dot semiconductor laser is studied both experimentally...
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...
This paper theoretically and experimentally studies the stability of the modelocking regime in quant...
We analyze the impact of slow intraband relaxation and strong carrier localization on the characteri...
The unique electronic structure of quantum dot based semiconductor lasers leads to significant diffe...
We present a comparative study of numerical simulations and experiments on the spatiotemporal dynami...
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
International audienceWe analyze the influence of the excited states (ES) on the dynamics of optical...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
The stability properties of injection-current profiled quantum dot lasers are analyzed for broad are...
We study numerically and experimentally the role of the injection current and reverse bias voltage o...
The impact of injection current profiling on the spatial mode structure of quantum dot semiconductor...
Optical injection is a key nonlinear laser configuration both for applications and fundamental studi...
The response of an optically injected quantum-dot semiconductor laser (SL) is studied both experimen...
The response of an optically injected quantum dot semiconductor laser is studied both experimentally...
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...
This paper theoretically and experimentally studies the stability of the modelocking regime in quant...
We analyze the impact of slow intraband relaxation and strong carrier localization on the characteri...
The unique electronic structure of quantum dot based semiconductor lasers leads to significant diffe...
We present a comparative study of numerical simulations and experiments on the spatiotemporal dynami...
Abstract. This thesis is focused on the experimental and theoretical study of novel quantum dot pass...
International audienceWe analyze the influence of the excited states (ES) on the dynamics of optical...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...