We present new calculation schemes using high-order finite element method implemented on unstructured grids with triangle elements for solving boundary-value problems that describe axially symmetric quantum dots. The efficiency of the algorithms and software is demonstrated by benchmark calculations of the energy spectrum, the envelope eigenfunctions of electron, hole and exciton states, and the direct interband light absorption in conical and spheroidal impenetrable quantum dots. © 2018 SPIE
The full potential-linearized augmented plane wave implemented in WIEN2K code to calculate the indir...
An efficient method for the theoretical investigation of optical properties of semiconductor core–sh...
Abstract. In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative schem...
We present new calculation schemes using high-order finite element method implemented on unstructure...
In this paper, we have researched the electronic and optical properties of cylindrical quantum dot s...
University of Minnesota M.S. thesis. January 2010. Major: Electrical and Computer Engineering. Advis...
The time-independent Schrödinger equation is solved using the finite element method (FEM) and the fi...
In this study the electronic eigenstructure of an exciton in a parabolic quantum dot (QD) has been c...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
We develop a mathematical model for the analysis of conduction and valence band eigenenergy in quant...
In this study, we develop and demonstrate an efficient self-consistent calculation schema that compu...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
This project uses the numerical technique known as the finite-difference method to solve for the ene...
The problem of exciton states in spherical semiconductor quantum dots is revisited, employing the fi...
In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative scheme for comp...
The full potential-linearized augmented plane wave implemented in WIEN2K code to calculate the indir...
An efficient method for the theoretical investigation of optical properties of semiconductor core–sh...
Abstract. In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative schem...
We present new calculation schemes using high-order finite element method implemented on unstructure...
In this paper, we have researched the electronic and optical properties of cylindrical quantum dot s...
University of Minnesota M.S. thesis. January 2010. Major: Electrical and Computer Engineering. Advis...
The time-independent Schrödinger equation is solved using the finite element method (FEM) and the fi...
In this study the electronic eigenstructure of an exciton in a parabolic quantum dot (QD) has been c...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
We develop a mathematical model for the analysis of conduction and valence band eigenenergy in quant...
In this study, we develop and demonstrate an efficient self-consistent calculation schema that compu...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
This project uses the numerical technique known as the finite-difference method to solve for the ene...
The problem of exciton states in spherical semiconductor quantum dots is revisited, employing the fi...
In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative scheme for comp...
The full potential-linearized augmented plane wave implemented in WIEN2K code to calculate the indir...
An efficient method for the theoretical investigation of optical properties of semiconductor core–sh...
Abstract. In some recent papers Li, Voskoboynikov, Lee, Sze and Tretyak suggested an iterative schem...