GaN microrods are used as a basis for subsequent InGaN quantum well (QW) and quantum dot deposition by metal-organic vapor phase epitaxy. The coverage of the shell along the sidewall of rods is dependent on the rod growth time and a complete coverage is obtained for shorter rod growth times. Transmission electron microscopy measurements are performed to reveal the structural properties of the InGaN layer on the sidewall facet and on the top facet. The presence of layers in the microrod and on the microrod surface will be discussed with respect to GaN and InGaN growth. A detailed model will be presented explaining the formation of multiple SiN layers and the partial and full coverage of the shell around the core. Cathodoluminescence measurem...
A comprehensive study has been conducted in order to develop, understand and define the epitaxial gr...
A comprehensive study has been conducted in order to develop, understand and define the epitaxial gr...
Self assembled GaN microdisks, micro and nanorods were grown by a mask free and self catalyzed meta...
GaN microrods are used as a basis for subsequent InGaN quantum well (QW) and quantum dot deposition ...
Spatially resolved emission properties of InGaN GaN quantum wells on the facets of microrods are ana...
Spatially resolved emission properties of InGaN GaN quantum wells on the facets of microrods are ana...
Spatially resolved emission properties of InGaN GaN quantum wells on the facets of microrods are ana...
Nitride-based three-dimensional core–shell nanorods (NRs) are promising candidates for the achieveme...
Controlling the long-range homogeneity of core-shell InGaN/GaN layers is essential for their use in ...
Core–shell indium gallium nitride (InGaN)/gallium nitride (GaN) structures are attractive as light e...
GaN/InGaN core-shell nanorods are promising for optoelectronic applications due to the absence of po...
GaN/InGaN core-shell nanorods are promising for optoelectronic applications due to the absence of po...
We report the ability to control relative InN incorporation in InGaN/GaN quantum wells (QWs) grown o...
Self assembled GaN microdisks, micro and nanorods were grown by a mask free and self catalyzed meta...
GaN/InGaN core-shell nanorods are promising for optoelectronic applications due to the absence of po...
A comprehensive study has been conducted in order to develop, understand and define the epitaxial gr...
A comprehensive study has been conducted in order to develop, understand and define the epitaxial gr...
Self assembled GaN microdisks, micro and nanorods were grown by a mask free and self catalyzed meta...
GaN microrods are used as a basis for subsequent InGaN quantum well (QW) and quantum dot deposition ...
Spatially resolved emission properties of InGaN GaN quantum wells on the facets of microrods are ana...
Spatially resolved emission properties of InGaN GaN quantum wells on the facets of microrods are ana...
Spatially resolved emission properties of InGaN GaN quantum wells on the facets of microrods are ana...
Nitride-based three-dimensional core–shell nanorods (NRs) are promising candidates for the achieveme...
Controlling the long-range homogeneity of core-shell InGaN/GaN layers is essential for their use in ...
Core–shell indium gallium nitride (InGaN)/gallium nitride (GaN) structures are attractive as light e...
GaN/InGaN core-shell nanorods are promising for optoelectronic applications due to the absence of po...
GaN/InGaN core-shell nanorods are promising for optoelectronic applications due to the absence of po...
We report the ability to control relative InN incorporation in InGaN/GaN quantum wells (QWs) grown o...
Self assembled GaN microdisks, micro and nanorods were grown by a mask free and self catalyzed meta...
GaN/InGaN core-shell nanorods are promising for optoelectronic applications due to the absence of po...
A comprehensive study has been conducted in order to develop, understand and define the epitaxial gr...
A comprehensive study has been conducted in order to develop, understand and define the epitaxial gr...
Self assembled GaN microdisks, micro and nanorods were grown by a mask free and self catalyzed meta...