AbstractWe theoretically consider the diamagnetic response of an InAs/GaAs asymmetrical nano-ring and asymmetrical quantum dot molecule when external magnetic field is applied in the system’s growth directions. We use the effective one-electronic-band Hamiltonian (energy-position-dependent electron effective mass and g-factor approximation) with smooth full three-dimensional confinement potentials mapping actual strain and material content in those nano-objects. This approach allows us to simulate and study physical properties of semiconductor nano-objects within a wide range of change in geometry and parameters. Although the geometries of the systems investigated are very different, we found for both systems a similar magnetic response. At...
A method for the calculation of the electronic structure of truncated-cone self-assemled InAs/GaAs q...
In this paper a comparative theoretical study was made of the magneto-optical response of square lat...
Usually, semiconductor quantum dots represent a two-dimensional nanoscale system with few electrons ...
Elsevier use only: Received date here; revised date here; accepted date here We theoretically consid...
AbstractWe theoretically consider the diamagnetic response of an InAs/GaAs asymmetrical nano-ring an...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Abstract We report on the diamagnetic responses of different exciton complexes in single InAs/GaAs s...
The influence of lateral asymmetry on the electronic structure and optical transitions in elliptical...
p. 1-4The renormalization of the electron g factor by the confining potential in semiconductor nanos...
The renormalization of the electron g factor by the confining potential in semiconductor nanostructu...
The study of doped semiconductor quantum dots with magnetic impurities has been a challenging task w...
In this thesis the optical properties of self-assembled III-V semiconductor nanostructures are inves...
A microphotoluminescence study of single InAs/GaAs quantum dots (QDs) in the presence of an applied ...
The properties of quasi-two-dimensional semiconductor quantum dots are reviewed. Experimental techni...
Publisher's PDFWe uncover the underlying physics that explains the energy shifts of discrete states ...
A method for the calculation of the electronic structure of truncated-cone self-assemled InAs/GaAs q...
In this paper a comparative theoretical study was made of the magneto-optical response of square lat...
Usually, semiconductor quantum dots represent a two-dimensional nanoscale system with few electrons ...
Elsevier use only: Received date here; revised date here; accepted date here We theoretically consid...
AbstractWe theoretically consider the diamagnetic response of an InAs/GaAs asymmetrical nano-ring an...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Abstract We report on the diamagnetic responses of different exciton complexes in single InAs/GaAs s...
The influence of lateral asymmetry on the electronic structure and optical transitions in elliptical...
p. 1-4The renormalization of the electron g factor by the confining potential in semiconductor nanos...
The renormalization of the electron g factor by the confining potential in semiconductor nanostructu...
The study of doped semiconductor quantum dots with magnetic impurities has been a challenging task w...
In this thesis the optical properties of self-assembled III-V semiconductor nanostructures are inves...
A microphotoluminescence study of single InAs/GaAs quantum dots (QDs) in the presence of an applied ...
The properties of quasi-two-dimensional semiconductor quantum dots are reviewed. Experimental techni...
Publisher's PDFWe uncover the underlying physics that explains the energy shifts of discrete states ...
A method for the calculation of the electronic structure of truncated-cone self-assemled InAs/GaAs q...
In this paper a comparative theoretical study was made of the magneto-optical response of square lat...
Usually, semiconductor quantum dots represent a two-dimensional nanoscale system with few electrons ...