Current communication networks needs to keep up with the exponential growth of today\u2019s internet traffic, and telecommunications industry is looking for radically new integrated photonics components for new generation optical networks. We at National Research Council (NRC) Canada have successfully developed nanostructure InAs/InP quantum dot (QD) coherence comb lasers (CCLs) around 1.55 \uf06dm. Unlike uniform semiconductor layers in most telecommunication lasers, in these QD CCLs light is emitted and amplified by millions of semiconductor QDs less than 60 nm in diameter. Each QD acts like an isolated light source acting independently of its neighbours, and each QD emits light at its own unique wavelength. The end result is a QD CCL is ...
The demand for bandwidth capacity is increasing exponentially due to the spread of high-speed intern...
L’objectif de la thèse concerne le développement de lasers à semi-conducteur à blocage de modes qui ...
The demand of bandwidth capacity is rising exponentially in recent years due to the spread of high-s...
We have experimentally demonstrated several InAs/InP quantum dot C-band coherence frequency comb las...
We report on the design, growth, and fabrication of InAs/InP quantum dash (QD) gain materials and th...
We have developed InAs/InP quantum-dot 34.462-GHz C-band coherent comb laser modules with low relati...
We will present the design, growth, fabrication, electronic control and packaging of the InAs/InP qu...
We have developed an InAs/InP quantum dot (QD) C-band coherent comb laser (CCL) module with actively...
We report on our most recent results on quantum dot (QD) laser devices around 1550 nm based on InAs/...
Abstract We report on the design, growth, fabrication, and performance of InAs/InP quantum dash (QD)...
This article reviews the recent progress in the growth and device applications of InAs/InP quantum d...
This PhD thesis focus on the development of high-performance optical frequency combs (OFCs) generate...
InAs nanostructures formed on InP substrates allow the realization of devices working in telecommuni...
Chip-scale coherent semiconductor light sources generating optical frequency combs currently revolut...
Optical communication was developed to allow high-speed and long-distance data transmission and is c...
The demand for bandwidth capacity is increasing exponentially due to the spread of high-speed intern...
L’objectif de la thèse concerne le développement de lasers à semi-conducteur à blocage de modes qui ...
The demand of bandwidth capacity is rising exponentially in recent years due to the spread of high-s...
We have experimentally demonstrated several InAs/InP quantum dot C-band coherence frequency comb las...
We report on the design, growth, and fabrication of InAs/InP quantum dash (QD) gain materials and th...
We have developed InAs/InP quantum-dot 34.462-GHz C-band coherent comb laser modules with low relati...
We will present the design, growth, fabrication, electronic control and packaging of the InAs/InP qu...
We have developed an InAs/InP quantum dot (QD) C-band coherent comb laser (CCL) module with actively...
We report on our most recent results on quantum dot (QD) laser devices around 1550 nm based on InAs/...
Abstract We report on the design, growth, fabrication, and performance of InAs/InP quantum dash (QD)...
This article reviews the recent progress in the growth and device applications of InAs/InP quantum d...
This PhD thesis focus on the development of high-performance optical frequency combs (OFCs) generate...
InAs nanostructures formed on InP substrates allow the realization of devices working in telecommuni...
Chip-scale coherent semiconductor light sources generating optical frequency combs currently revolut...
Optical communication was developed to allow high-speed and long-distance data transmission and is c...
The demand for bandwidth capacity is increasing exponentially due to the spread of high-speed intern...
L’objectif de la thèse concerne le développement de lasers à semi-conducteur à blocage de modes qui ...
The demand of bandwidth capacity is rising exponentially in recent years due to the spread of high-s...