12 páginas, 4 figuras.We apply low temperature confocal optical microscopy to spatially resolve, and spectroscopically study a single self assembled quantum dot. By comparing the emission spectra obtained at various excitation levels to a theoretical many body model, we show that: Single exciton radiative recombination is very weak. Sharp spectral lines are due to optical transitions between confined multiexcitonic states among which excitons thermalize within their lifetime. Once these few states are fully occupied, broad bands appear due to transitions between states which contain continuum electrons.Peer reviewe
We present optical spectra from numerous, single, self-assembled InAs/InP quantum dots. More than 50...
In this work we investigate light matter interaction at the nanoscale. We focus on zero-dimensional ...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We apply low temperature diffraction limited confocal optical microscopy to spatially resolve, and s...
We resolve spatially, spectroscopically and temporally the photoluminescence emission from single se...
Spatially resolved spectroscopy is used to investigate excitation and relaxation mechanisms in indiv...
Abstract: We study the photoluminescence properties of GaAs/AlGaAs QD arrays grown by MBE on a patte...
Self-assembled AI36Ino.As/AIo33Gao.67As quantum dots have been studied by single dot photoluminescen...
We experimentally and theoretically investigate the photoluminescence broadening of different excito...
We investigate micro-photoluminescence spectra of arrays of locally homogeneous quantum dots (QDs). ...
We have studied the recombination dynamics of excitons and excitonic complexes confined in single Ga...
We studied quantum dot arrays using m-PL measurements. Clear multi-excitonic spectra are observed, w...
We studied quantum dot arrays using m-PL measurements. Clear multi-excitonic spectra are observed, w...
Single InxGa1-xAs/GaAs quantum dot photoluminescence spectra, obtained by low-temperature near-field...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We present optical spectra from numerous, single, self-assembled InAs/InP quantum dots. More than 50...
In this work we investigate light matter interaction at the nanoscale. We focus on zero-dimensional ...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We apply low temperature diffraction limited confocal optical microscopy to spatially resolve, and s...
We resolve spatially, spectroscopically and temporally the photoluminescence emission from single se...
Spatially resolved spectroscopy is used to investigate excitation and relaxation mechanisms in indiv...
Abstract: We study the photoluminescence properties of GaAs/AlGaAs QD arrays grown by MBE on a patte...
Self-assembled AI36Ino.As/AIo33Gao.67As quantum dots have been studied by single dot photoluminescen...
We experimentally and theoretically investigate the photoluminescence broadening of different excito...
We investigate micro-photoluminescence spectra of arrays of locally homogeneous quantum dots (QDs). ...
We have studied the recombination dynamics of excitons and excitonic complexes confined in single Ga...
We studied quantum dot arrays using m-PL measurements. Clear multi-excitonic spectra are observed, w...
We studied quantum dot arrays using m-PL measurements. Clear multi-excitonic spectra are observed, w...
Single InxGa1-xAs/GaAs quantum dot photoluminescence spectra, obtained by low-temperature near-field...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We present optical spectra from numerous, single, self-assembled InAs/InP quantum dots. More than 50...
In this work we investigate light matter interaction at the nanoscale. We focus on zero-dimensional ...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...