In this paper, a combined approach of finite element method (FEM) and quadratic programming optimization method is proposed to investigate the nonuniform equilibrium composition profile of InGaAs/GaAs quantum dots (QDs) in the framework of Gibbs energy optimization (GEO). The proposed QDs are varied with aspect ratio from 0.3 to 0.5. The wave functions of electron and heavy hole are predicted by using the k . p method. The changes of wave functions before and after optimization can be observed by using composition optimization. Both the eigenvalues and transition energy change obviously with the increasing aspect ratio. The linear optical absorption coefficients corresponding to the interband ground state transition are obtained via the den...
Quantum dot (QD) structure has potential applications in modern highly efficient optoelectronic devi...
The full potential-linearized augmented plane wave implemented in WIEN2K code to calculate the indir...
We present a theoretical analysis of the optical matrix element between the electron and hole ground...
In this paper, a combined approach of finite element method (FEM) and quadratic programming optimiza...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
Semiconductor quantum dot have got scientific interest because of their unique electronic nature. In...
This PhD project carries out research on the computational modeling and analysis of quantum dots. Th...
A strained-modified, single-band, constant-potential three-dimensional model is formulated to study ...
WOS: 000278904200039We calculate the energy eigenvalues and the sate functions of one-electron Quant...
We have studied the effect of shape on the strain-modified electron/hole confinement potential in zi...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
We present eight-band k.p calculations of the electronic and polarization properties of columnar In\...
We present new calculation schemes using high-order finite element method implemented on unstructure...
In this study, the significant effect of the nonuniform composition in alloy quantum dots (QDs) on e...
We present effective-mass calculations of the bound-state energy levels of electrons confined inside...
Quantum dot (QD) structure has potential applications in modern highly efficient optoelectronic devi...
The full potential-linearized augmented plane wave implemented in WIEN2K code to calculate the indir...
We present a theoretical analysis of the optical matrix element between the electron and hole ground...
In this paper, a combined approach of finite element method (FEM) and quadratic programming optimiza...
ABSTRACT Semiconductor quantum dots have been of major interest in recent years. This has largely be...
Semiconductor quantum dot have got scientific interest because of their unique electronic nature. In...
This PhD project carries out research on the computational modeling and analysis of quantum dots. Th...
A strained-modified, single-band, constant-potential three-dimensional model is formulated to study ...
WOS: 000278904200039We calculate the energy eigenvalues and the sate functions of one-electron Quant...
We have studied the effect of shape on the strain-modified electron/hole confinement potential in zi...
We present a systematic investigation of calculating quantum dots (QDs) energy levels using finite e...
We present eight-band k.p calculations of the electronic and polarization properties of columnar In\...
We present new calculation schemes using high-order finite element method implemented on unstructure...
In this study, the significant effect of the nonuniform composition in alloy quantum dots (QDs) on e...
We present effective-mass calculations of the bound-state energy levels of electrons confined inside...
Quantum dot (QD) structure has potential applications in modern highly efficient optoelectronic devi...
The full potential-linearized augmented plane wave implemented in WIEN2K code to calculate the indir...
We present a theoretical analysis of the optical matrix element between the electron and hole ground...