The binding energy of a bound polaron in a spherical quantum dot has been investigated by using the variational method. The influence of LO and SO phonons have taken into consideration. Result shows that the phonon contribution to the binding energy is dependent on the size of the quantum dot as well as the position of the impurity in the quantum dot. Numerical calculation on the ZnSe quantum dot shows that such contribution is about 5% to 20% of the total binding energy
The ground-state energy of an N-polaron system, confined to a spherical quantum dot with a neutraliz...
In the strong-electron–phonon-coupling regime, we retrieve the stability criterion for bipolaron for...
To describe the interaction of molecular vibrations with electrons at a quantum dot contacted to met...
Polaron states in cylindrical and spherical quantum dots with parabolic confinement potentials are i...
International audiencePolaron states in cylindrical and spherical quantum dots with parabolic confin...
We have examined the binding energy of a polaron bound to a hydrogenic don...
Abstract. The electron and hole polaron energies are found in a quantum dot made of the materials wi...
In the framework of the effective-mass approximation and the modified Lee-Low-Pines variational meth...
Energy levels of an impurity atom and its binding energy in a quantum dot with or without electron-p...
A calculation of the variations of the energy and oscillator strength of the ground state of an exci...
International audienceWe study the effect of an external electric field on an exciton bound to an io...
The energy of electrons of univalent and bivalent impurity of a spherical β-HgS/CdS nanoheterostruct...
The confined energies of low lying 1s, 1p and 1d states of an electron in a spherical quantum dot h...
The binding energy of a negatively charged hydrogenic impurity with on- and off-center positions in ...
WOS: 000322610100040The binding energies of 1s-, 2p-, 3d- and 4f-states of a spherical quantum dot (...
The ground-state energy of an N-polaron system, confined to a spherical quantum dot with a neutraliz...
In the strong-electron–phonon-coupling regime, we retrieve the stability criterion for bipolaron for...
To describe the interaction of molecular vibrations with electrons at a quantum dot contacted to met...
Polaron states in cylindrical and spherical quantum dots with parabolic confinement potentials are i...
International audiencePolaron states in cylindrical and spherical quantum dots with parabolic confin...
We have examined the binding energy of a polaron bound to a hydrogenic don...
Abstract. The electron and hole polaron energies are found in a quantum dot made of the materials wi...
In the framework of the effective-mass approximation and the modified Lee-Low-Pines variational meth...
Energy levels of an impurity atom and its binding energy in a quantum dot with or without electron-p...
A calculation of the variations of the energy and oscillator strength of the ground state of an exci...
International audienceWe study the effect of an external electric field on an exciton bound to an io...
The energy of electrons of univalent and bivalent impurity of a spherical β-HgS/CdS nanoheterostruct...
The confined energies of low lying 1s, 1p and 1d states of an electron in a spherical quantum dot h...
The binding energy of a negatively charged hydrogenic impurity with on- and off-center positions in ...
WOS: 000322610100040The binding energies of 1s-, 2p-, 3d- and 4f-states of a spherical quantum dot (...
The ground-state energy of an N-polaron system, confined to a spherical quantum dot with a neutraliz...
In the strong-electron–phonon-coupling regime, we retrieve the stability criterion for bipolaron for...
To describe the interaction of molecular vibrations with electrons at a quantum dot contacted to met...