Magnetization is induced in an ensemble of quantum dots, each charged with a single electron, when it is illuminated with a short circularly polarized light pulse that is resonant with the fundamental energy gap of the quantum dots. In this investigation, a quantum-mechanical model for the light-induced magnetization is presented. The phase of the magnetization precession as a function of the strength of the magnetic field in a Voigt geometry is in excellent agreement with experimental data measured on (In,Ga)As singly charged quantum dot ensembles. It is demonstrated that the precession of the hole in the trion plays a vital role because it determines the amplitude and phase of the magnetization precession. The model could also be easily e...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
We use the central spin model to analyse optical pumping of singly charged quantum dots. An exact qu...
Magnetization is induced in an ensemble of quantum dots, each charged with a single electron, when i...
Magnetization is induced in an ensemble of quantum dots, each charged with a single electron, when i...
We present a theory and experiment demonstrating the optical readout of charge and spin in a single ...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
We use numerically exact diagonalization to calculate the spin-orbit- and phonon-induced triplet-sin...
International audienceWe demonstrate here the phase control of the neutral exciton quantum beats in ...
We study the effect of free carriers on photoluminescence from modulation-doped self-assembled quant...
The photoluminescence of quantum dots is studied in a high magnetic field regime where the cyclotron...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
We use the central spin model to analyse optical pumping of singly charged quantum dots. An exact qu...
Magnetization is induced in an ensemble of quantum dots, each charged with a single electron, when i...
Magnetization is induced in an ensemble of quantum dots, each charged with a single electron, when i...
We present a theory and experiment demonstrating the optical readout of charge and spin in a single ...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
We use numerically exact diagonalization to calculate the spin-orbit- and phonon-induced triplet-sin...
International audienceWe demonstrate here the phase control of the neutral exciton quantum beats in ...
We study the effect of free carriers on photoluminescence from modulation-doped self-assembled quant...
The photoluminescence of quantum dots is studied in a high magnetic field regime where the cyclotron...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
In this work, we show that an electric field can be used to tune the g-factor in (In,Ga)As quantum d...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
We use the central spin model to analyse optical pumping of singly charged quantum dots. An exact qu...