The development of passive optical networks and the increase of short-reach connections make an increasing need for efficient, energy-friendly and low-cost transmitters emitting at 1.3 µm.To this end, monolithic photonic integration, which aims to embed several optical functions into the same circuit, is a solution. Selective area growth (SAG) by metal-organic vapor-phase-epitaxy (MOVPE) seems to be an attractive technique to achieve this integration. This approach allows defining, in a single epitaxial step, the structures of the different unitary photonic functions constituting the photonic integrated circuit. One issue of this technique is the growth modeling, necessary to predict the material distribution. Previously, the model was only...
Metalorganic vapour phase epitaxy (MOVPE) has proven to be a successful method for growth of structu...
The last century saw the advent of quantum mechanics, information processing and integrated optics.T...
To follow the evolution imposed by Moore's law, digital circuits are becoming more and more parallel...
The development of passive optical networks and the increase of short-reach connections make an incr...
Le développement des réseaux optiques et l’augmentation des interconnexions à courtes distances, amè...
In this thesis we discuss the advantage of the selective area growth (SAG) approach to manufacturing...
The development of wavelength agnostic networks is currently an important driving force for developp...
Cette thèse est consacrée à l’épitaxie sélective en phase vapeur aux organométalliques de multipuit...
A multiwavelength laser (MWL) is fabricated by means of selective area growth (SAG) with metal organ...
The work conducted in this thesis focuses on the development of Photonic Integrated Circuits based o...
In this communication age, consumer internet traffic continues to grow at an exponential rate year o...
A novel integration technique has been developed using band-gap energy control of InGaAsP/InGaAsP mu...
Le trafic internet a connu un accroissement sans précédent au cours de la dernière décennie avec l’e...
A novel integration technique has been developed using band-gap energy control of InGaAsP/InGaAsP mu...
In order to follow the new needs in terms of optical bandwidth, optical fiber communications require...
Metalorganic vapour phase epitaxy (MOVPE) has proven to be a successful method for growth of structu...
The last century saw the advent of quantum mechanics, information processing and integrated optics.T...
To follow the evolution imposed by Moore's law, digital circuits are becoming more and more parallel...
The development of passive optical networks and the increase of short-reach connections make an incr...
Le développement des réseaux optiques et l’augmentation des interconnexions à courtes distances, amè...
In this thesis we discuss the advantage of the selective area growth (SAG) approach to manufacturing...
The development of wavelength agnostic networks is currently an important driving force for developp...
Cette thèse est consacrée à l’épitaxie sélective en phase vapeur aux organométalliques de multipuit...
A multiwavelength laser (MWL) is fabricated by means of selective area growth (SAG) with metal organ...
The work conducted in this thesis focuses on the development of Photonic Integrated Circuits based o...
In this communication age, consumer internet traffic continues to grow at an exponential rate year o...
A novel integration technique has been developed using band-gap energy control of InGaAsP/InGaAsP mu...
Le trafic internet a connu un accroissement sans précédent au cours de la dernière décennie avec l’e...
A novel integration technique has been developed using band-gap energy control of InGaAsP/InGaAsP mu...
In order to follow the new needs in terms of optical bandwidth, optical fiber communications require...
Metalorganic vapour phase epitaxy (MOVPE) has proven to be a successful method for growth of structu...
The last century saw the advent of quantum mechanics, information processing and integrated optics.T...
To follow the evolution imposed by Moore's law, digital circuits are becoming more and more parallel...