The present paper is aimed to investigate theoretically the quantum confinement in Cd1−xZnxS-related quantum dots with x the atomic fraction of Zn. For both electrons and holes, we have calculated the excited bound states with use of the spherical geometry model and assuming a finite potential at the boundary. For electrons, calculations were made by using Bessel function as an orthonormal basis. However, for holes, the confined subbands have been calculated based on squared quantum well envelope wave functions. The subband energies were evaluated for both electrons and holes versus zinc composition as well
We have studied the electronic structure of CdS/ZnSe coupled quantum dots, a novel heterostructure a...
Abstract: The ground state confinement energy and its associated wavelength as a function of radius ...
Blueshift of the band gap due to quantum confinement is calculated in a tight-binding model for a se...
<p>The present paper is aimed to investigate theoretically the quantum confinement in Cd1-xZnxS – re...
<p>In this paper, our interest is focused on a theoretical investigation of chains based on Cd1-xZnx...
We report a numerical simulation of the conduction and valence band edges of Cd 1-x Zn xS nanocrysta...
In this thesis the electronic and optical properties of semiconductor quantum dots are investigated ...
The problem of exciton states in spherical semiconductor quantum dots is revisited, employing the fi...
<p>In this paper, we study the tunneling effect in the case of a double Cd<sub>1-x</sub>Zn<sub>x</su...
Semiconductor quantum dots (QDs) are of great topical interest due to the possibility to study basic...
<p>The present work is aimed to investigate theoretically the electronic properties of superlattices...
Semiconductor quantum dots (QDs) are of great topical interest due to the possibility to study basic...
In this work we calculated the electronic structure of spherical quantum dots based on zincblend sem...
We calculate the optical properties of nitride-based quantum dots by taking into account quantum con...
The binding energy of an exciton inside a CdSe/ZnTe core/shell spherical quantum dot was theoretical...
We have studied the electronic structure of CdS/ZnSe coupled quantum dots, a novel heterostructure a...
Abstract: The ground state confinement energy and its associated wavelength as a function of radius ...
Blueshift of the band gap due to quantum confinement is calculated in a tight-binding model for a se...
<p>The present paper is aimed to investigate theoretically the quantum confinement in Cd1-xZnxS – re...
<p>In this paper, our interest is focused on a theoretical investigation of chains based on Cd1-xZnx...
We report a numerical simulation of the conduction and valence band edges of Cd 1-x Zn xS nanocrysta...
In this thesis the electronic and optical properties of semiconductor quantum dots are investigated ...
The problem of exciton states in spherical semiconductor quantum dots is revisited, employing the fi...
<p>In this paper, we study the tunneling effect in the case of a double Cd<sub>1-x</sub>Zn<sub>x</su...
Semiconductor quantum dots (QDs) are of great topical interest due to the possibility to study basic...
<p>The present work is aimed to investigate theoretically the electronic properties of superlattices...
Semiconductor quantum dots (QDs) are of great topical interest due to the possibility to study basic...
In this work we calculated the electronic structure of spherical quantum dots based on zincblend sem...
We calculate the optical properties of nitride-based quantum dots by taking into account quantum con...
The binding energy of an exciton inside a CdSe/ZnTe core/shell spherical quantum dot was theoretical...
We have studied the electronic structure of CdS/ZnSe coupled quantum dots, a novel heterostructure a...
Abstract: The ground state confinement energy and its associated wavelength as a function of radius ...
Blueshift of the band gap due to quantum confinement is calculated in a tight-binding model for a se...