In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative scheme for computing the electronic states of quantum dots and quantum rings taking into account an electron effective mass which depends on the position and electron energy level. In this paper we prove that this method converges globally and linearly in an alternating way, i.e. yielding lower and upper bounds of a predetermined energy level in turn. Moreover, taking advantage of the Rayleigh functional of the governing nonlinear eigenproblem, we propose a variant which converges even quadratically thereby reducing the computational cost substantially. Two examples of finite element models of quantum dots of different shapes demonstrate the efficiency of t...
In this study, we have calculated energy levels of an N-electron quantum dot. For this purpose, we h...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
A charge patching method and an idealized surface passivation are used to calculate the single elect...
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...
A computational technique for computing relevant energy levels and corresponding wave functions of a...
AbstractThe electronic properties of a three-dimensional quantum dot array model formed by verticall...
We calculated the total energy of a semiconductor quantum dot formed in gate and etching defined dev...
University of Minnesota M.S. thesis. January 2010. Major: Electrical and Computer Engineering. Advis...
Local estimates to the two-dimensional electron–electron electrostatics, i.e., Hartree energy, are o...
We study the electronic structure of three-dimensional quantum dots using the Hartree-Fock approxim...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...
It is demonstrated that the bound electronic states of a self-assembled quantum dot may be calculate...
This project uses the numerical technique known as the finite-difference method to solve for the ene...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
In this study, we have calculated energy levels of an N-electron quantum dot. For this purpose, we h...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
A charge patching method and an idealized surface passivation are used to calculate the single elect...
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...
A computational technique for computing relevant energy levels and corresponding wave functions of a...
AbstractThe electronic properties of a three-dimensional quantum dot array model formed by verticall...
We calculated the total energy of a semiconductor quantum dot formed in gate and etching defined dev...
University of Minnesota M.S. thesis. January 2010. Major: Electrical and Computer Engineering. Advis...
Local estimates to the two-dimensional electron–electron electrostatics, i.e., Hartree energy, are o...
We study the electronic structure of three-dimensional quantum dots using the Hartree-Fock approxim...
The electronic structures of N quantum dot molecules (QDMs) are investigated theoretically in the fr...
It is demonstrated that the bound electronic states of a self-assembled quantum dot may be calculate...
This project uses the numerical technique known as the finite-difference method to solve for the ene...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
In this study, we have calculated energy levels of an N-electron quantum dot. For this purpose, we h...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
A charge patching method and an idealized surface passivation are used to calculate the single elect...