We calculate binding energies and densities of states of hydrogenic impurities in quantum-well wires with rectangular cross sections using a variational procedure within the effective-mass approximation. Calculations were performed as functions of the position of the impurity in a quantum-well wire of infinite depth and for various sizes of the wire cross section. The center of gravity of the impurity band and the density of impurity states are analyzed and compared with their quantum-well counterparts, with similarities as well as differences being discussed. Our results indicate that a proper consideration of the density of impurity states may be of relevance in the interpretation of future experimental data related to shallow impurities ...
ABSTRACT: The effects of hydrostatic stress on the binding energy and the density of shallow-donor a...
ABSTRACT: Using a variational method the binding energy has been calculated for a shallow donor impu...
A variational calculation within the effective-mass approximation of the ground and lowest excited s...
The binding energies of hydrogenic impurities in both infinite and finite GaAs-(Ga,Al)As cylindrical...
The binding energies of shallow donor impurities in cylindrical quantum-well wires are calculated as...
ABSTRACT: Using a variational approach within the effective mass approximation we calculate the bind...
We have calculated the densities of states and the optical-absorption spectra of shallow donors and ...
ABSTRACT: In this work we study the binding energy of the ground state for hydrogenic donor impurity...
In this work, we directly calculate the ground state energies for an electron in quantum well wires ...
The ground-state energies and wave functions for an electron in quantum well-wires (QWWs) with diffe...
We present a new variationnal method for calculating the ground state energy of an electron bound t...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)The effect of spatially dependent scree...
The binding energies as well as wave functions of hydrogenic impurities located in V-groove GaAs/Al ...
Within the effective-mass approximation, we have investigated the binding energies of donor impuriti...
Within the effective-mass approximation, we have investigated the binding energies of donor impuriti...
ABSTRACT: The effects of hydrostatic stress on the binding energy and the density of shallow-donor a...
ABSTRACT: Using a variational method the binding energy has been calculated for a shallow donor impu...
A variational calculation within the effective-mass approximation of the ground and lowest excited s...
The binding energies of hydrogenic impurities in both infinite and finite GaAs-(Ga,Al)As cylindrical...
The binding energies of shallow donor impurities in cylindrical quantum-well wires are calculated as...
ABSTRACT: Using a variational approach within the effective mass approximation we calculate the bind...
We have calculated the densities of states and the optical-absorption spectra of shallow donors and ...
ABSTRACT: In this work we study the binding energy of the ground state for hydrogenic donor impurity...
In this work, we directly calculate the ground state energies for an electron in quantum well wires ...
The ground-state energies and wave functions for an electron in quantum well-wires (QWWs) with diffe...
We present a new variationnal method for calculating the ground state energy of an electron bound t...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)The effect of spatially dependent scree...
The binding energies as well as wave functions of hydrogenic impurities located in V-groove GaAs/Al ...
Within the effective-mass approximation, we have investigated the binding energies of donor impuriti...
Within the effective-mass approximation, we have investigated the binding energies of donor impuriti...
ABSTRACT: The effects of hydrostatic stress on the binding energy and the density of shallow-donor a...
ABSTRACT: Using a variational method the binding energy has been calculated for a shallow donor impu...
A variational calculation within the effective-mass approximation of the ground and lowest excited s...