We present a design of a tunable hybrid laser based on III-V Reflective Semiconductor Optical Amplifier (RSOA) and Silicon Photonics (SiPh) external mirror that represents a good trade off between high Wall-Plug Efficiency (WPE) and high tolerance to optical feedback caused by unwanted back reflections from the rest of the SiPh chip. The sensitivity to optical feedback of different configurations, an important issue in many SiPh applications, is evaluated through the calculation of the critical feedback level based on an effective Lang-Kobayashi model and the main results are validated through numerical simulations of laser dynamics. We conclude that hybrid lasers with long effective external cavities typically designed to reduce the laser ...
In recent years, Silicon Photonics has emerged as a promising technology for cost-effective fabricat...
International audienceWith an ever-growing transmission data rate, electronic components reach a lim...
We present a novel approach to integrate III-V based hybrid lasers on a silicon platform using reson...
We present a design of a tunable hybrid laser based on III-V Reflective Semiconductor Optical Amplif...
We report how external cavity III-V/Si hybrid lasers operate in regimes of ultra-damped relaxation o...
We address the stability of a tunable hybrid laser based on a III-V Reflective Semiconductor Optical...
We report the experimental demonstration of a new design for external cavity hybrid lasers consistin...
The need for miniaturized, fully integrated semiconductor lasers has stimulated significant research...
We report the experimental demonstration of an alternative design of external-cavity hybrid lasers c...
Hybrid integration of semiconductor optical amplifiers with frequency-selective feedback circuits, i...
We compare the design of three different single mode laser structures consisting in a Reflective Sem...
To increase the spectral efficiency of coherent communication systems, lasers with ever-narrower lin...
The feedback sensitivity of a high coherence silicon/III-V laser is quantified using an interferomet...
We demonstrate that high-coherence Si/III-V hybrid lasers are much more robust than conventional III...
A novel approach is presented to realize compact III-V-on-silicon microlasers. The concept relies on...
In recent years, Silicon Photonics has emerged as a promising technology for cost-effective fabricat...
International audienceWith an ever-growing transmission data rate, electronic components reach a lim...
We present a novel approach to integrate III-V based hybrid lasers on a silicon platform using reson...
We present a design of a tunable hybrid laser based on III-V Reflective Semiconductor Optical Amplif...
We report how external cavity III-V/Si hybrid lasers operate in regimes of ultra-damped relaxation o...
We address the stability of a tunable hybrid laser based on a III-V Reflective Semiconductor Optical...
We report the experimental demonstration of a new design for external cavity hybrid lasers consistin...
The need for miniaturized, fully integrated semiconductor lasers has stimulated significant research...
We report the experimental demonstration of an alternative design of external-cavity hybrid lasers c...
Hybrid integration of semiconductor optical amplifiers with frequency-selective feedback circuits, i...
We compare the design of three different single mode laser structures consisting in a Reflective Sem...
To increase the spectral efficiency of coherent communication systems, lasers with ever-narrower lin...
The feedback sensitivity of a high coherence silicon/III-V laser is quantified using an interferomet...
We demonstrate that high-coherence Si/III-V hybrid lasers are much more robust than conventional III...
A novel approach is presented to realize compact III-V-on-silicon microlasers. The concept relies on...
In recent years, Silicon Photonics has emerged as a promising technology for cost-effective fabricat...
International audienceWith an ever-growing transmission data rate, electronic components reach a lim...
We present a novel approach to integrate III-V based hybrid lasers on a silicon platform using reson...