Our approach is quasi-analytical. We consider the Hamiltonian of a two-electron quantum dot composed of quadratic plus Coulomb terms as well as a term related to the interaction with the external magnetic field. To avoid the complexity, the Taylor expansion of the effective potential is introduced into the problem and thereby a solution is found for the eigenvalues of the corresponding two-body Schrödinger equation in terms of the Wigner parameter. We have finally made a comparison with some other theoretical results
The confinement model potential for quantum dot considered in the present paper is smooth, has finit...
We calculated the total energy of a semiconductor quantum dot formed in gate and etching defined dev...
Applicability of the method of intermediate problems to the investigation of the energy eigenvalues ...
The time independent Schrödinger equation for two electrons confined in an external potential is sol...
Exact solutions of the eigenstates of two-interacting electron quantum dot nanostructures in an exte...
p.1-11A variational method called discrete variable representation is applied to study the energy sp...
The time-independent Schrödinger equation is solved using the finite element method (FEM) and the fi...
We have studied a two-electron quantum dot molecule in a magnetic field. The electron interaction is...
In this study, we have calculated energy levels of an N-electron quantum dot. For this purpose, we h...
[[abstract]]The ground-state energy of two electrons in a harmonic quantum dot is obtained by using ...
This research aims i) to determine the density profile and calculate the ground state energy of a qu...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
The shifted 1=N expansion method is used to study the spectral properties of two interacting electro...
Electronic states in the cylindrical quantum dot with Morse confining potential have been theoreti...
The ground state and the excitation spectrum of strongly correlated electrons in quantum dots are in...
The confinement model potential for quantum dot considered in the present paper is smooth, has finit...
We calculated the total energy of a semiconductor quantum dot formed in gate and etching defined dev...
Applicability of the method of intermediate problems to the investigation of the energy eigenvalues ...
The time independent Schrödinger equation for two electrons confined in an external potential is sol...
Exact solutions of the eigenstates of two-interacting electron quantum dot nanostructures in an exte...
p.1-11A variational method called discrete variable representation is applied to study the energy sp...
The time-independent Schrödinger equation is solved using the finite element method (FEM) and the fi...
We have studied a two-electron quantum dot molecule in a magnetic field. The electron interaction is...
In this study, we have calculated energy levels of an N-electron quantum dot. For this purpose, we h...
[[abstract]]The ground-state energy of two electrons in a harmonic quantum dot is obtained by using ...
This research aims i) to determine the density profile and calculate the ground state energy of a qu...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
The shifted 1=N expansion method is used to study the spectral properties of two interacting electro...
Electronic states in the cylindrical quantum dot with Morse confining potential have been theoreti...
The ground state and the excitation spectrum of strongly correlated electrons in quantum dots are in...
The confinement model potential for quantum dot considered in the present paper is smooth, has finit...
We calculated the total energy of a semiconductor quantum dot formed in gate and etching defined dev...
Applicability of the method of intermediate problems to the investigation of the energy eigenvalues ...