Within the envelope function approach and the effective-mass approximation, we have investigated theoretically the effect of an intense, high-frequency laser field on the bound states in a Ga (x) In1 - x N (y) As1 - y /GaAs double quantum well for different nitrogen and indium mole concentrations. The laser-dressed potential, bound states, and squared wave functions related to these bound states in Ga1 - x In (x) N (y) As1 - y /GaAs double quantum well are investigated as a function of the position and laser-dressing parameter. Our numerical results show that both intense laser field and nitrogen (indium) incorporation into the GaInNAs have strong influences on carrier localization
In this work, within the effective mass approximation we have performed a theoretical study of elect...
The effect of non-resonant intense laser field on the intersubband-related optical absorption coeffi...
The effect of non-resonant intense laser field on the intersubband-related optical absorption coeffi...
Within the envelope function approach and the effective-mass approximation, we have investigated the...
We have investigated the effects of the intense laser field and nitrogen concentration on bound stat...
We have investigated the effects of the intense laser field and nitrogen concentration on bound sta...
The effects of an intense, high-frequency laser field linearly polarized along the growth direction ...
The effect of indium and nitrogen mole concentrations on the nonlinear optical properties in a Ga1-x...
The effect of the intense laser field on the intersubband optical absorption for (1-2) transition in...
Within the framework of the effective-mass approximation, using a variational method, we have calcul...
In this work are studied the intense laser effects on the impurity states in GaAs-Ga1- (x) Al (x) As...
In this present study, the combined effects of intense laser field and applied electric field on the...
The effects of intense laser radiation on the exciton states in GaAs-Ga1xAlxAs quantum wells are stu...
ABSTRACT: The effects of intense laser radiation on the exciton states in GaAs-Ga1–xAlxAs quantum we...
For different nitrogen and indium concentrations, intense laser field (ILF) effect on donor impurity...
In this work, within the effective mass approximation we have performed a theoretical study of elect...
The effect of non-resonant intense laser field on the intersubband-related optical absorption coeffi...
The effect of non-resonant intense laser field on the intersubband-related optical absorption coeffi...
Within the envelope function approach and the effective-mass approximation, we have investigated the...
We have investigated the effects of the intense laser field and nitrogen concentration on bound stat...
We have investigated the effects of the intense laser field and nitrogen concentration on bound sta...
The effects of an intense, high-frequency laser field linearly polarized along the growth direction ...
The effect of indium and nitrogen mole concentrations on the nonlinear optical properties in a Ga1-x...
The effect of the intense laser field on the intersubband optical absorption for (1-2) transition in...
Within the framework of the effective-mass approximation, using a variational method, we have calcul...
In this work are studied the intense laser effects on the impurity states in GaAs-Ga1- (x) Al (x) As...
In this present study, the combined effects of intense laser field and applied electric field on the...
The effects of intense laser radiation on the exciton states in GaAs-Ga1xAlxAs quantum wells are stu...
ABSTRACT: The effects of intense laser radiation on the exciton states in GaAs-Ga1–xAlxAs quantum we...
For different nitrogen and indium concentrations, intense laser field (ILF) effect on donor impurity...
In this work, within the effective mass approximation we have performed a theoretical study of elect...
The effect of non-resonant intense laser field on the intersubband-related optical absorption coeffi...
The effect of non-resonant intense laser field on the intersubband-related optical absorption coeffi...