AbstractQuantum nanostructures (QNSs), due to their widespread and attractive physical, optical, and electronic properties, have been at the center of attention of many nanoscience and nanotechnology researches. In order to predict the electro-mechanical behavior of QNSs, accurate determination of the electro-elastic fields induced by quantum wells (QWs), quantum wires (QWRs), and quantum dots (QDs) in such nanostructures would be of great importance and particular interest. In this study, by utilization of the electro-mechanical eigenfield concept in conjunction with the Fourier series technique, an analytical solution is presented which gives the electro-elastic fields induced by one-, two-, and three-dimensional periodic distribution of ...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
© Copyright 2018 American Chemical Society. Quantum devices formed in high-electron-mobility semicon...
We study the band structure of semiconductor nanowires with quantum dots embedded in them. The band ...
Quantum nanostructures ( QNSs), due to their widespread and attractive physical, optical, and electr...
AbstractQuantum nanostructures (QNSs), due to their widespread and attractive physical, optical, and...
Accurate determination of the electro-elastic fields of quantum nanostructures within piezoelectric ...
Recent investigations on multifunctional piezoelectric semiconductors have shown their excellent pot...
An accurate determination of the two- and three-dimensional electro-elastic fields of periodically a...
AbstractCharacteristics of the self-organized quantum dots (QDs) such as electron and hole energy le...
AbstractBy introducing a homogeneous piezoelectric material and its Green’s function, we present a n...
In a series of recent papers we demonstrated that coupled electro-mechanical effects can lead to pro...
Elastic fields in quantum dot (QD) structures affect their physical and mechanical properties, and t...
Modern nanotechnology allows the production of, depending on the application, various quantum nanost...
Quantum dots (QDs) are nanometer scale regions that can trap charges. In this dissertation I describ...
The energy spectrum of electron and hole is investigated in a complicated nanoheterosystem consistin...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
© Copyright 2018 American Chemical Society. Quantum devices formed in high-electron-mobility semicon...
We study the band structure of semiconductor nanowires with quantum dots embedded in them. The band ...
Quantum nanostructures ( QNSs), due to their widespread and attractive physical, optical, and electr...
AbstractQuantum nanostructures (QNSs), due to their widespread and attractive physical, optical, and...
Accurate determination of the electro-elastic fields of quantum nanostructures within piezoelectric ...
Recent investigations on multifunctional piezoelectric semiconductors have shown their excellent pot...
An accurate determination of the two- and three-dimensional electro-elastic fields of periodically a...
AbstractCharacteristics of the self-organized quantum dots (QDs) such as electron and hole energy le...
AbstractBy introducing a homogeneous piezoelectric material and its Green’s function, we present a n...
In a series of recent papers we demonstrated that coupled electro-mechanical effects can lead to pro...
Elastic fields in quantum dot (QD) structures affect their physical and mechanical properties, and t...
Modern nanotechnology allows the production of, depending on the application, various quantum nanost...
Quantum dots (QDs) are nanometer scale regions that can trap charges. In this dissertation I describ...
The energy spectrum of electron and hole is investigated in a complicated nanoheterosystem consistin...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
© Copyright 2018 American Chemical Society. Quantum devices formed in high-electron-mobility semicon...
We study the band structure of semiconductor nanowires with quantum dots embedded in them. The band ...