AbstractThe electronic properties of a three-dimensional quantum dot array model formed by vertically aligned quantum dots are investigated numerically. The governing equation of the model is the Schrödinger equation which is incorporated with a nonparabolic effective mass approximation that depends on the energy and position. Several interior eigenvalues must be identified from a large-scale high-order matrix polynomial. In this paper, we propose numerical schemes that are capable of simulating the quantum dot array model with up to 12 quantum dots on a personal computer. The numerical experiments also lead to novel findings in the electronic properties of the quantum dot array model
We have developed a set of path integral quantum Monte Carlo techniques for studying self-assembled ...
Abstract. A computational technique for computing relevant energy levels and corresponding wave func...
This work is an investigation into the electronic behaviour of semiconductor quantum dots, particula...
AbstractThe electronic properties of a three-dimensional quantum dot array model formed by verticall...
In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative scheme for comp...
Abstract. In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative schem...
We have studied the exciton states in vertically stacked self-assembled quantum disks within the eff...
An exactly solvable local Thomas-Fermi-Dirac approximation is applied to the calculation of the grou...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
An exactly solvable local Thomas-Fermi-Dirac approximation is applied to the calculation of the grou...
Abstract. In this work we discuss 3D selfconsistent solution of Poisson and Schrödinger equations fo...
Local estimates to the two-dimensional electron–electron electrostatics, i.e., Hartree energy, are o...
It is demonstrated that the bound electronic states of a self-assembled quantum dot may be calculate...
An accurate model of a vertical pillar quantum dot is described. The full three-dimensional structur...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...
We have developed a set of path integral quantum Monte Carlo techniques for studying self-assembled ...
Abstract. A computational technique for computing relevant energy levels and corresponding wave func...
This work is an investigation into the electronic behaviour of semiconductor quantum dots, particula...
AbstractThe electronic properties of a three-dimensional quantum dot array model formed by verticall...
In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative scheme for comp...
Abstract. In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative schem...
We have studied the exciton states in vertically stacked self-assembled quantum disks within the eff...
An exactly solvable local Thomas-Fermi-Dirac approximation is applied to the calculation of the grou...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
An exactly solvable local Thomas-Fermi-Dirac approximation is applied to the calculation of the grou...
Abstract. In this work we discuss 3D selfconsistent solution of Poisson and Schrödinger equations fo...
Local estimates to the two-dimensional electron–electron electrostatics, i.e., Hartree energy, are o...
It is demonstrated that the bound electronic states of a self-assembled quantum dot may be calculate...
An accurate model of a vertical pillar quantum dot is described. The full three-dimensional structur...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...
We have developed a set of path integral quantum Monte Carlo techniques for studying self-assembled ...
Abstract. A computational technique for computing relevant energy levels and corresponding wave func...
This work is an investigation into the electronic behaviour of semiconductor quantum dots, particula...