Studies aimed at understanding the nonlinear optical (NLO) properties of GaAs/Ga0.7Al0.3As morse quantum well (QW) have focused on the intersubband optical absorption coefficients (OACs) and refractive index changes (RICs). These studies have taken two complimentary approaches: (1) The compact-density-matrix approach and iterative method have been used to obtain the expressions of OACs and RICs in morse QW. (2) Finite difference techniques have been used to obtain energy eigenvalues and their corresponding eigenfunctions of GaAs/Ga0.7Al0.3As morse QW under an applied magnetic field, hydrostatic pressure, and temperature. Our results show that the hydrostatic pressure and magnetic field have a significant influence on the position and the ma...
In the present paper, we report a theoretical investigations on the linear and nonlinear optical pro...
The combined effects of electric and magnetic fields on the optical absorption coefficients and refr...
Simultaneous effects of magnetic field, pressure and temperature on the exciton binding energies are...
Studies aimed at understanding the nonlinear optical (NLO) properties of GaAs/Ga0.7Al0.3As morse qua...
In this work, the effects of magnetic field, hydrostatic pressure and temperature on the linear and ...
In this present study, we have theoretically investigated the effects of hydrostatic pressure and te...
In this paper, the effects of hydrostatic pressure, temperature and intense laser field on the linea...
authoren This paper investigates the effects of an intense laser field and electric field on the opt...
In the present work, the effects of electric and magnetic fields on the optical absorption coefficie...
In the present work, total optical absorption coefficient (the linear and third-order nonlinear) and...
In this paper, the numerical computation for the absorption coefficient and the relative refractive ...
In this study, the effects of hydrostatic pressure, temperature, and high-frequency intense laser fi...
The properties of the electronic structure of a finite-barrier semiconductor multiple quantum well a...
In this study, both the intersubband optical absorption coefficients and the refractive index change...
We investigated the effect of the hydrostatic pressure on the optoelectronic properties of a quantum...
In the present paper, we report a theoretical investigations on the linear and nonlinear optical pro...
The combined effects of electric and magnetic fields on the optical absorption coefficients and refr...
Simultaneous effects of magnetic field, pressure and temperature on the exciton binding energies are...
Studies aimed at understanding the nonlinear optical (NLO) properties of GaAs/Ga0.7Al0.3As morse qua...
In this work, the effects of magnetic field, hydrostatic pressure and temperature on the linear and ...
In this present study, we have theoretically investigated the effects of hydrostatic pressure and te...
In this paper, the effects of hydrostatic pressure, temperature and intense laser field on the linea...
authoren This paper investigates the effects of an intense laser field and electric field on the opt...
In the present work, the effects of electric and magnetic fields on the optical absorption coefficie...
In the present work, total optical absorption coefficient (the linear and third-order nonlinear) and...
In this paper, the numerical computation for the absorption coefficient and the relative refractive ...
In this study, the effects of hydrostatic pressure, temperature, and high-frequency intense laser fi...
The properties of the electronic structure of a finite-barrier semiconductor multiple quantum well a...
In this study, both the intersubband optical absorption coefficients and the refractive index change...
We investigated the effect of the hydrostatic pressure on the optoelectronic properties of a quantum...
In the present paper, we report a theoretical investigations on the linear and nonlinear optical pro...
The combined effects of electric and magnetic fields on the optical absorption coefficients and refr...
Simultaneous effects of magnetic field, pressure and temperature on the exciton binding energies are...