We report on the nonlinear optical properties of a quantum dot including the Rashba spin-orbit interaction (RSOI) with external electric and magnetic fields. The effect of dot size is considered. We do not make any assumptions about the strength of the confinement. We use the numerical diagonalization of the Hamiltonian to determine the electronic structure. The confining potential is taken to be of the Woods-Saxon type. We find the effect of RSOI on nonlinear optical coefficients
Quantum oscillations of the spin conductance through regular and chaotic 2D quantum dots under the v...
Single electron confined in a quantum dot is studied. A special emphasis is laid on the spin propert...
In this work, the effects of the Rashba and Dresselhaus spin–orbit interactions, eccentricity and ex...
Here we have investigated the influence of magnetic field and confinement potential on non...
We investigate the effects of Rashba spin-orbit interaction on the optical absorption coefficients a...
In this work, we studied the effects of in-plane magnetic field and Rashba spin-orbit interaction on...
The effects of Rashba spin-orbit interaction (SOI) on the energy levels of parabolically confines qu...
A theoretical study of the effect of the confining potential on the nonlinear optical properties of ...
WOS: 000398056700013We have calculated the wavefunctions and energy eigenvalues of spherical quantum...
In this work, we investigate the intersubband optical absorption coefficients and refractive index c...
There have been intense research efforts over the last years focused on understanding the Rashba spi...
International audienceIn this paper, we examine the effect of introducing a conical disclination on ...
Simultaneous effects of magnetic field, pressure and temperature on the exciton binding energies are...
In the present study, we theoretically study the resonance fluorescence of a two-dimensional quantum...
Electron transport through a one-dimensional quantum ring, subjected to Rashba spin–orbit interactio...
Quantum oscillations of the spin conductance through regular and chaotic 2D quantum dots under the v...
Single electron confined in a quantum dot is studied. A special emphasis is laid on the spin propert...
In this work, the effects of the Rashba and Dresselhaus spin–orbit interactions, eccentricity and ex...
Here we have investigated the influence of magnetic field and confinement potential on non...
We investigate the effects of Rashba spin-orbit interaction on the optical absorption coefficients a...
In this work, we studied the effects of in-plane magnetic field and Rashba spin-orbit interaction on...
The effects of Rashba spin-orbit interaction (SOI) on the energy levels of parabolically confines qu...
A theoretical study of the effect of the confining potential on the nonlinear optical properties of ...
WOS: 000398056700013We have calculated the wavefunctions and energy eigenvalues of spherical quantum...
In this work, we investigate the intersubband optical absorption coefficients and refractive index c...
There have been intense research efforts over the last years focused on understanding the Rashba spi...
International audienceIn this paper, we examine the effect of introducing a conical disclination on ...
Simultaneous effects of magnetic field, pressure and temperature on the exciton binding energies are...
In the present study, we theoretically study the resonance fluorescence of a two-dimensional quantum...
Electron transport through a one-dimensional quantum ring, subjected to Rashba spin–orbit interactio...
Quantum oscillations of the spin conductance through regular and chaotic 2D quantum dots under the v...
Single electron confined in a quantum dot is studied. A special emphasis is laid on the spin propert...
In this work, the effects of the Rashba and Dresselhaus spin–orbit interactions, eccentricity and ex...