III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detectors) in the visible (0.4-0.8 μm), near-infrared (0.8-3 μm), mid-infrared (3-5 μm) and far-infrared (> 8 μm) wavelength ranges, with great potential for high performance and high temperature operation. As well as simple designs, complex structures incorporating low dimensional components (e.g. quantum wells and quantum dots) are not unusual. Often, the optical and electronic characteristics of these structures are altered significantly as compared to bulk material. As a prerequisite to design for different applications, the study of their electronic and optical properties is essential. With the increasing computational power of modern personal...
A new capability of our well-known NEMO 3-D simulator (Ref. Klimeck et al., 2007 [10]) is introduced...
Research on semiconductor quantum structures has raised many interesting questions about fundamental...
Quaternary III-V InAsSbP quantum dots (QDs) have been grown in the form of cooperative InAsSb/InAsP ...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computati...
International audienceWe present a brief overview of the main results obtained in our group for the ...
Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computati...
PhD ThesisThe influence of structural size and geometry on the electronic states, optical transitio...
Quantum dots grown by self-assembly process are typically constructed by 50,000 to 5,000,000 structu...
A new capability of our well-known NEMO 3-D simulator (Ref. Klimeck et al., 2007 [10]) is introduced...
Research on semiconductor quantum structures has raised many interesting questions about fundamental...
Quaternary III-V InAsSbP quantum dots (QDs) have been grown in the form of cooperative InAsSb/InAsP ...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
III-V semiconductor nanostructures are widely used in optoelectronic devices (e.g. lasers and detect...
Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computati...
International audienceWe present a brief overview of the main results obtained in our group for the ...
Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computati...
PhD ThesisThe influence of structural size and geometry on the electronic states, optical transitio...
Quantum dots grown by self-assembly process are typically constructed by 50,000 to 5,000,000 structu...
A new capability of our well-known NEMO 3-D simulator (Ref. Klimeck et al., 2007 [10]) is introduced...
Research on semiconductor quantum structures has raised many interesting questions about fundamental...
Quaternary III-V InAsSbP quantum dots (QDs) have been grown in the form of cooperative InAsSb/InAsP ...