We report on ground-state calculations based on current-spin density-functional theory for circular parabolic quantum dots. Hund's first rule, well-known from atomic physics, applies not only at zero magnetic field; analogous rules, related to the level occupancy near the Fermi energy, determine the spin configuration of the ground state in finite magnetic field. Consequently, the addition spectrum of the quantum dot exhibits a specific non-monotonous dependence on magnetic field. We discuss our results with focus on recent experiments which may already contain indications of this new feature
Ground state energies are obtained using the unrestricted Hartree-Fock (HF) method for up to four in...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
We report on ground-state calculations based on current-spin density-functional theory for circular ...
Ground-state calculations based on current spin density-functional theory for circular parabolic qua...
A density-functional self-consistent calculation of the ground-state electronic density of quantum d...
Texto completo: acesso restrito. p. 2090–2099The Roothaan and Pople–Nesbet approaches for real atoms...
We consider the magnetic field dependence of the chemical potential for parabolically confined quant...
Abstract. Ground state energies are obtained using the unrestricted HartreeFock (HF) method for up t...
We present a variational method for calculating ground-state properties of quantum dots in high magn...
URL:http://link.aps.org/doi/10.1103/PhysRevB.50.14722 DOI:10.1103/PhysRevB.50.14722We present a stu...
We consider the magnetic field dependence of the chemical potential for parabolically confined quant...
We study the ground states of a planar quantum dot with N = 5, 6, 7 electrons, in the presence of a ...
Texto completo: acesso restrito. p. 90-94The unrestricted Pople–Nesbet approach for real atoms is ad...
We use diffusion Monte Carlo to study the ground state, the low-lying excitation spectrum and the sp...
Ground state energies are obtained using the unrestricted Hartree-Fock (HF) method for up to four in...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
We report on ground-state calculations based on current-spin density-functional theory for circular ...
Ground-state calculations based on current spin density-functional theory for circular parabolic qua...
A density-functional self-consistent calculation of the ground-state electronic density of quantum d...
Texto completo: acesso restrito. p. 2090–2099The Roothaan and Pople–Nesbet approaches for real atoms...
We consider the magnetic field dependence of the chemical potential for parabolically confined quant...
Abstract. Ground state energies are obtained using the unrestricted HartreeFock (HF) method for up t...
We present a variational method for calculating ground-state properties of quantum dots in high magn...
URL:http://link.aps.org/doi/10.1103/PhysRevB.50.14722 DOI:10.1103/PhysRevB.50.14722We present a stu...
We consider the magnetic field dependence of the chemical potential for parabolically confined quant...
We study the ground states of a planar quantum dot with N = 5, 6, 7 electrons, in the presence of a ...
Texto completo: acesso restrito. p. 90-94The unrestricted Pople–Nesbet approach for real atoms is ad...
We use diffusion Monte Carlo to study the ground state, the low-lying excitation spectrum and the sp...
Ground state energies are obtained using the unrestricted Hartree-Fock (HF) method for up to four in...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...