Abstract Effective mass equations are the simplest models of carrier states in a semiconductor structures that reduce the complexity of a solid-state system to Schrödinger- or Pauli-like equations resempling those well known from quantum mechanics textbooks. Here we present a systematic derivation of a conduction-band effective mass equation for a self-assembled semiconductor quantum dot in a magnetic field from the 8-band k · p theory. The derivation allows us to classify various forms of the effective mass equations in terms of a hierarchy of approximations. We assess the accuracy of the approximations in calculating selected spectral and spin-related characteristics. We indicate the importance of preserving the off-diagonal terms of the ...
An analytical solution of the effective mass equation for a spherical valence band in cubic semicond...
This book deals with the Effective Electron Mass (EEM) in low dimensional semiconductors. The materi...
Quantum dot nanostructures incorporate unique mechanical and electronic properties that dictate thei...
The goal of this Thesis is to study the electronic and optical properties of semiconductor nanostruc...
This book addresses several mathematical models from the most relevant class of kp-Schrödinger syste...
The effective mass of electrons in low-dimensional semiconductors is position-dependent. The standar...
The knowledge of effective masses is a key ingredient to analyze numerous properties of semiconducto...
Strained epitaxy has been shown to produce high quality InAs/GaAs quantum dot structures by single s...
The quantum confinement for a conduction-band electron within a spherical quantum dot is investigate...
The quantum confinement for a conduction-band electron within a spherical quantum dot is investigate...
The quantum confinement for a conduction-band electron within a spherical quantum dot is investigate...
A new effective-mass theory is developed by introducing a mixing parameter of arbitrary strength int...
Quantum effects at the nanometric level have been observed in many confined structures, and partic-u...
We develop a mathematical model for the analysis of conduction and valence band eigenenergy in quant...
In this paper we study the effective electron mass (EEM) in Nano wires (NWs) of nonlinear optical ma...
An analytical solution of the effective mass equation for a spherical valence band in cubic semicond...
This book deals with the Effective Electron Mass (EEM) in low dimensional semiconductors. The materi...
Quantum dot nanostructures incorporate unique mechanical and electronic properties that dictate thei...
The goal of this Thesis is to study the electronic and optical properties of semiconductor nanostruc...
This book addresses several mathematical models from the most relevant class of kp-Schrödinger syste...
The effective mass of electrons in low-dimensional semiconductors is position-dependent. The standar...
The knowledge of effective masses is a key ingredient to analyze numerous properties of semiconducto...
Strained epitaxy has been shown to produce high quality InAs/GaAs quantum dot structures by single s...
The quantum confinement for a conduction-band electron within a spherical quantum dot is investigate...
The quantum confinement for a conduction-band electron within a spherical quantum dot is investigate...
The quantum confinement for a conduction-band electron within a spherical quantum dot is investigate...
A new effective-mass theory is developed by introducing a mixing parameter of arbitrary strength int...
Quantum effects at the nanometric level have been observed in many confined structures, and partic-u...
We develop a mathematical model for the analysis of conduction and valence band eigenenergy in quant...
In this paper we study the effective electron mass (EEM) in Nano wires (NWs) of nonlinear optical ma...
An analytical solution of the effective mass equation for a spherical valence band in cubic semicond...
This book deals with the Effective Electron Mass (EEM) in low dimensional semiconductors. The materi...
Quantum dot nanostructures incorporate unique mechanical and electronic properties that dictate thei...