The coherent dynamics of magnetoexcitons in semiconductor nanorings following pulsed optical excitation is studied. The calculated temporal evolution of the excitonic dipole moment may be understood as a superposition of the relative motion of electrons and holes and a global circular motion associated with the magnetic-field splitting of these states. This dynamics of the electron-hole pairs can be generated either by local optical excitation of an ordered ring or, alternatively, by homogeneous excitation of rings with broken rotational symmetry due to disorder or band tilting
When a local and attractive potential is quenched in a nanowire, the spectrum changes its topology f...
We study analytically the optical properties of a simple model for an electron-hole pair on a ring s...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...
We study properties of exciton in a weakly coupled concentric quantum rings, penetrated by an axiall...
Linear and nonlinear optical absorption spectra are studied theoretically for semiconductor nano rin...
We have studied the femtosecond dynamics of excitonic resonances in quantum well microcavities under...
Two concentric two-dimensional GaAs/(Al,Ga)As nanorings in a normal magnetic field are theoretically...
The magnetic field effects on excitons in an InAs nanoring are studied theoretically. By numerically...
The recent thrust in ultrafast magnetization dynamics aims at extending spintronic functionalities t...
The Aharonov–Bohm effect of excitons and their relaxation kinetics are investigated within the model...
We report on a magnetophotoluminescence study of single self-assembled semiconductor nanorings which...
Ultrafast laser pulses and coherent techniques are used to create coherent electronic excitations an...
In this paper a comparative theoretical study was made of the magneto-optical response of square lat...
We present photoluminescence (PL) measurements of self-assembled In(Ga)As QRs in strong pulsed magne...
Excitonic properties and the dynamics are reported in quantum dots (QDs) and quantum wells (QW) of d...
When a local and attractive potential is quenched in a nanowire, the spectrum changes its topology f...
We study analytically the optical properties of a simple model for an electron-hole pair on a ring s...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...
We study properties of exciton in a weakly coupled concentric quantum rings, penetrated by an axiall...
Linear and nonlinear optical absorption spectra are studied theoretically for semiconductor nano rin...
We have studied the femtosecond dynamics of excitonic resonances in quantum well microcavities under...
Two concentric two-dimensional GaAs/(Al,Ga)As nanorings in a normal magnetic field are theoretically...
The magnetic field effects on excitons in an InAs nanoring are studied theoretically. By numerically...
The recent thrust in ultrafast magnetization dynamics aims at extending spintronic functionalities t...
The Aharonov–Bohm effect of excitons and their relaxation kinetics are investigated within the model...
We report on a magnetophotoluminescence study of single self-assembled semiconductor nanorings which...
Ultrafast laser pulses and coherent techniques are used to create coherent electronic excitations an...
In this paper a comparative theoretical study was made of the magneto-optical response of square lat...
We present photoluminescence (PL) measurements of self-assembled In(Ga)As QRs in strong pulsed magne...
Excitonic properties and the dynamics are reported in quantum dots (QDs) and quantum wells (QW) of d...
When a local and attractive potential is quenched in a nanowire, the spectrum changes its topology f...
We study analytically the optical properties of a simple model for an electron-hole pair on a ring s...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...