Self-assembled quantum dots (SAQDs) grown under biaxial tension could enable novel devices by taking advantage of the strong band gap reduction induced by tensile strain. Tensile SAQDs with low optical transition energies could find application in the technologically important area of mid-infrared optoelectronics. In the case of Ge, biaxial tension can even cause a highly desirable crossover from an indirect- to a direct-gap band structure. However, the inability to grow tensile SAQDs without dislocations has impeded progress in these directions. In this article, we demonstrate a method to grow dislocation-free, tensile SAQDs by employing the unique strain relief mechanisms of (110)-oriented surfaces. As a model system, we show that tensile...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
III-V self-assembled quantum dots (QDs) and quantum dashes (Q-dashes) grown by epitaxy have numerous...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
The self-assembly of epitaxial quantum dots on (001) surfaces, driven by compressive strain, is a wi...
The self-assembly of epitaxial quantum dots on (001) surfaces, driven by compressive strain, is a wi...
Discovered recently, tensile-strained quantum dots are optically active, defect-free nanostructures....
Quantum dots that store large tensile strains represent an emerging research area. We combine experi...
Molecular beam epitaxy (MBE) enables the growth of semiconductor nanostructures known as tensile-str...
A recently developed growth technique enables the self-assembly of defect-free quantum dots on (111)...
Highly tensile-strained Ge quantum dots (TS-Ge-QDs) emitting structures with different size were suc...
Highly tensile-strained Ge quantum dots (TS-Ge-QDs) emitting structures with different size were suc...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
III-V self-assembled quantum dots (QDs) and quantum dashes (Q-dashes) grown by epitaxy have numerous...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
The self-assembly of epitaxial quantum dots on (001) surfaces, driven by compressive strain, is a wi...
The self-assembly of epitaxial quantum dots on (001) surfaces, driven by compressive strain, is a wi...
Discovered recently, tensile-strained quantum dots are optically active, defect-free nanostructures....
Quantum dots that store large tensile strains represent an emerging research area. We combine experi...
Molecular beam epitaxy (MBE) enables the growth of semiconductor nanostructures known as tensile-str...
A recently developed growth technique enables the self-assembly of defect-free quantum dots on (111)...
Highly tensile-strained Ge quantum dots (TS-Ge-QDs) emitting structures with different size were suc...
Highly tensile-strained Ge quantum dots (TS-Ge-QDs) emitting structures with different size were suc...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...
Research into self-assembled semiconductor quantum dots (QDs) has helped advance numerous optoelectr...