The growth and optoelectronic properties of core-shell nanostructures are influenced by the strain induced by the lattice mismatch between core and shell. In contrast with planar films, nanostructures contain multiple facets that act as independent substrates for shell growth, which enables different relaxation mechanisms. In this study, X-ray diffraction data are presented that show that InGa1-N shells grown on GaN cores are strained along each of the facets independently. Reciprocal space maps reveal multiple Bragg peaks, corresponding to different parts of the shell being strained along the individual facet planes. The strained lattice constants were found from the positions of the Bragg peaks. Vegard's law and Hooke's law for an anisotr...
Nanofocus x-ray diffraction is used to investigate the structure and local strain field of an isolat...
In situ synchrotron X-ray reciprocal space mapping was carried out to investigate the evolution of l...
Nanofocus x-ray diffraction is used to investigate the structure and local strain field of an isolat...
Strained InGaN/GaN core-shell nanowires (NWs) are promising candidates for solid state lighting appl...
The core-shell nanowires have the promise to become the future building blocks of light emitting dio...
The future of solid-state lighting can be potentially driven by applications of InGaN/GaN core-shell...
Nanostructuring can be used to improve the performance of III-nitride light emitting diodes (LEDs). ...
The future of solid-state lighting can be potentially driven by applications of InGaN/GaN core–shell...
International audienceThe growth and structural properties of GaN/AlN core-shell nanowire heterostru...
The future of solid-state lighting can be potentially driven by applications of InGaN/GaN core–shell...
Top-down fabricated GaN nanowires, 250 nm in diameter and with various heights, have been used to ex...
A theoretical investigation on explanation of the composition profile in triangular and hexagonal cr...
We investigate the strain state of ensembles of thin and nearly coalescence-free self-assembled GaN ...
AbstractAfter discussing the GaN NW nucleation issue, we will present the structural properties of a...
The structural and optical properties of InGaN/GaN nanowire heterostructures grown by plasma-assiste...
Nanofocus x-ray diffraction is used to investigate the structure and local strain field of an isolat...
In situ synchrotron X-ray reciprocal space mapping was carried out to investigate the evolution of l...
Nanofocus x-ray diffraction is used to investigate the structure and local strain field of an isolat...
Strained InGaN/GaN core-shell nanowires (NWs) are promising candidates for solid state lighting appl...
The core-shell nanowires have the promise to become the future building blocks of light emitting dio...
The future of solid-state lighting can be potentially driven by applications of InGaN/GaN core-shell...
Nanostructuring can be used to improve the performance of III-nitride light emitting diodes (LEDs). ...
The future of solid-state lighting can be potentially driven by applications of InGaN/GaN core–shell...
International audienceThe growth and structural properties of GaN/AlN core-shell nanowire heterostru...
The future of solid-state lighting can be potentially driven by applications of InGaN/GaN core–shell...
Top-down fabricated GaN nanowires, 250 nm in diameter and with various heights, have been used to ex...
A theoretical investigation on explanation of the composition profile in triangular and hexagonal cr...
We investigate the strain state of ensembles of thin and nearly coalescence-free self-assembled GaN ...
AbstractAfter discussing the GaN NW nucleation issue, we will present the structural properties of a...
The structural and optical properties of InGaN/GaN nanowire heterostructures grown by plasma-assiste...
Nanofocus x-ray diffraction is used to investigate the structure and local strain field of an isolat...
In situ synchrotron X-ray reciprocal space mapping was carried out to investigate the evolution of l...
Nanofocus x-ray diffraction is used to investigate the structure and local strain field of an isolat...