Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optical sources with ultrasmall footprint. To fully realize their potential in on-chip photonic systems, scalable methods are required for dealing with large populations of inhomogeneous devices that are typically randomly distributed on host substrates. In this work two complementary, high-throughput techniques are combined: the characterization of nanowire laser populations using automated optical microscopy, and a high-accuracy transfer-printing process with automatic device spatial registration and transfer. Here, a population of NW lasers is characterized, binned by threshold energy density, and subsequently printed in arrays onto a secondary ...
In recent years there has been a tremendous interest in nanoscale optoelectronic devices. Among the...
We experimentally determine the lasing mode(s) in optically pumped semiconductor nanowire lasers. Th...
Nanowire lasers are integrated with planar waveguide devices using a high positional accuracy micro-...
Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optica...
Semiconductor nanowires, with lasing emission at room temperature, can be transferred in a controlle...
The authors review their work on the accurate positioning of semiconductor nanowire lasers by means ...
Accurate integration of nanowire (NW) lasers with precise (sub-micrometric) control of their positio...
The aim of this thesis work is to develop and investigate a deterministic integration approach based...
Accurate integration of nanowire (NW) lasers with precise (sub-micrometric) control of their positio...
Accurate positioning and organization of Indium Phosphide (InP) Nanowires (NW) with lasing emission ...
Single nanowire lasers based on bottom-up III-V materials have been shown to exhibit room-temperatur...
Both gain medium design and cavity geometry are known to be important for low threshold operation of...
International audienceWe review principles and trends in the use of semiconductor nanowires as gain ...
The epitaxial growth of semiconductor materials in nanowire geometries is enabling a new class of co...
Optical pumping of nanowire emitters, embedded in polymeric waveguides is achieved using a micro-LED...
In recent years there has been a tremendous interest in nanoscale optoelectronic devices. Among the...
We experimentally determine the lasing mode(s) in optically pumped semiconductor nanowire lasers. Th...
Nanowire lasers are integrated with planar waveguide devices using a high positional accuracy micro-...
Semiconductor nanowire (NW) lasers are a promising technology for the realization of coherent optica...
Semiconductor nanowires, with lasing emission at room temperature, can be transferred in a controlle...
The authors review their work on the accurate positioning of semiconductor nanowire lasers by means ...
Accurate integration of nanowire (NW) lasers with precise (sub-micrometric) control of their positio...
The aim of this thesis work is to develop and investigate a deterministic integration approach based...
Accurate integration of nanowire (NW) lasers with precise (sub-micrometric) control of their positio...
Accurate positioning and organization of Indium Phosphide (InP) Nanowires (NW) with lasing emission ...
Single nanowire lasers based on bottom-up III-V materials have been shown to exhibit room-temperatur...
Both gain medium design and cavity geometry are known to be important for low threshold operation of...
International audienceWe review principles and trends in the use of semiconductor nanowires as gain ...
The epitaxial growth of semiconductor materials in nanowire geometries is enabling a new class of co...
Optical pumping of nanowire emitters, embedded in polymeric waveguides is achieved using a micro-LED...
In recent years there has been a tremendous interest in nanoscale optoelectronic devices. Among the...
We experimentally determine the lasing mode(s) in optically pumped semiconductor nanowire lasers. Th...
Nanowire lasers are integrated with planar waveguide devices using a high positional accuracy micro-...