A density-functional self-consistent calculation of the ground-state electronic density of quantum dots under an arbitrary magnetic field is performed. We consider a parabolic lateral confining potential. The addition energy, E(N+1)-E(N), where N is the number of electrons, is compared with experimental data and the different contributions to the energy are analyzed. The Hamiltonian is modeled by a density functional, which includes the exchange and correlation interactions and the local formation of Landau levels for different equilibrium spin populations. We obtain an analytical expression for the critical density under which spontaneous polarization, induced by the exchange interaction, takes place
Using the method of breaking circular symmetry and the subsequent symmetry restoration via projectio...
Exact diagonalization studies of the level density in a six-electron quantum dot under magnetic fiel...
We present a variational method for calculating ground-state properties of quantum dots in high magn...
A density-functional self-consistent calculation of the ground-state electronic density of quantum d...
We report on ground-state calculations based on current-spin density-functional theory for circular ...
URL:http://link.aps.org/doi/10.1103/PhysRevB.61.2729 DOI:10.1103/PhysRevB.61.2729Recent photoabsorp...
URL:http://link.aps.org/doi/10.1103/PhysRevB.50.14722 DOI:10.1103/PhysRevB.50.14722We present a stu...
We have computed electronic structures and total energies of circularly confined two-dimensional qua...
Within current-density-functional theory, we have studied a quantum dot made of 210 electrons confin...
We perform Hartree-Fock calculations to show that quantum dots (i.e., two-dimensional systems of up ...
Ground-state calculations based on current spin density-functional theory for circular parabolic qua...
We consider the magnetic field dependence of the chemical potential for parabolically confined quant...
The description of interacting many-electron systems in external magnetic fields is considered in th...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
We study the possible lowest energy states for spin-polarized electrons in a parabolic quantum dot i...
Using the method of breaking circular symmetry and the subsequent symmetry restoration via projectio...
Exact diagonalization studies of the level density in a six-electron quantum dot under magnetic fiel...
We present a variational method for calculating ground-state properties of quantum dots in high magn...
A density-functional self-consistent calculation of the ground-state electronic density of quantum d...
We report on ground-state calculations based on current-spin density-functional theory for circular ...
URL:http://link.aps.org/doi/10.1103/PhysRevB.61.2729 DOI:10.1103/PhysRevB.61.2729Recent photoabsorp...
URL:http://link.aps.org/doi/10.1103/PhysRevB.50.14722 DOI:10.1103/PhysRevB.50.14722We present a stu...
We have computed electronic structures and total energies of circularly confined two-dimensional qua...
Within current-density-functional theory, we have studied a quantum dot made of 210 electrons confin...
We perform Hartree-Fock calculations to show that quantum dots (i.e., two-dimensional systems of up ...
Ground-state calculations based on current spin density-functional theory for circular parabolic qua...
We consider the magnetic field dependence of the chemical potential for parabolically confined quant...
The description of interacting many-electron systems in external magnetic fields is considered in th...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
We study the possible lowest energy states for spin-polarized electrons in a parabolic quantum dot i...
Using the method of breaking circular symmetry and the subsequent symmetry restoration via projectio...
Exact diagonalization studies of the level density in a six-electron quantum dot under magnetic fiel...
We present a variational method for calculating ground-state properties of quantum dots in high magn...