We present an investigation of the photoluminescence of CdSe/ZnS quantum dots at high light intensity and in low magnetic fields. Upon increasing the magnetic field up to 90G, the photoluminescence intensity drops. When decreasing the magnetic field back to zero the photoluminescence drop remains present. A plausible explanation is the Zeeman splitting of defect-associated energy levels under the influence of a magnetic field. The defect-trapped electrons may then be positioned at a metastable level, thereby reducing the number of recombinations. This effect may be used to control the luminescence of quantum dots
Surface modification is a versatile and effective route towards improving functional and structural ...
This article presents a theoretical study of the electronic, impurity-related, and nonlinear optical...
The exchange interaction between band carriers and electrons from the d-shell of a single magnetic i...
We have studied photoluminescence spectra of CdSe self-assembled quantum dots (QD's) embedded i...
The photoluminescence of annealed Cd\(_x\)Zn\(_{1-x}\)Se quantum dots (QDs) under the influence of a...
A photoluminescence study of self-assembled InAs/GaAs quantum dots under the influence of magnetic f...
We report a spectroscopic study of the two lowest-energy exciton levels of individual CdSe-ZnS nanoc...
The photoluminescence of quantum dots is studied in a high magnetic field regime where the cyclotron...
Results of photoluminescence excitation (PLE) measurements of quantum dots (QDs) in high magnetic fi...
We have synthesized CdS and Cd0.7Mn0.3S nanocrystals with diameters of about 4.5 nm. These materials...
We have studied photoluminescence from GaAs/AlxGa1-xAs strain-induced quantum dots in a magnetic fie...
We have measured the low-temperature (4.2 K) exciton lifetimes of zinc-blende CdTe nanocrystal quant...
We study the effect of free carriers on photoluminescence from modulation-doped self-assembled quant...
International audienceFor low Mn-doped Cd(Mn)Te/ZnTe single quantum dots, we report a nonlinear beha...
A microphotoluminescence study of single InAs/GaAs quantum dots (QDs) in the presence of an applied ...
Surface modification is a versatile and effective route towards improving functional and structural ...
This article presents a theoretical study of the electronic, impurity-related, and nonlinear optical...
The exchange interaction between band carriers and electrons from the d-shell of a single magnetic i...
We have studied photoluminescence spectra of CdSe self-assembled quantum dots (QD's) embedded i...
The photoluminescence of annealed Cd\(_x\)Zn\(_{1-x}\)Se quantum dots (QDs) under the influence of a...
A photoluminescence study of self-assembled InAs/GaAs quantum dots under the influence of magnetic f...
We report a spectroscopic study of the two lowest-energy exciton levels of individual CdSe-ZnS nanoc...
The photoluminescence of quantum dots is studied in a high magnetic field regime where the cyclotron...
Results of photoluminescence excitation (PLE) measurements of quantum dots (QDs) in high magnetic fi...
We have synthesized CdS and Cd0.7Mn0.3S nanocrystals with diameters of about 4.5 nm. These materials...
We have studied photoluminescence from GaAs/AlxGa1-xAs strain-induced quantum dots in a magnetic fie...
We have measured the low-temperature (4.2 K) exciton lifetimes of zinc-blende CdTe nanocrystal quant...
We study the effect of free carriers on photoluminescence from modulation-doped self-assembled quant...
International audienceFor low Mn-doped Cd(Mn)Te/ZnTe single quantum dots, we report a nonlinear beha...
A microphotoluminescence study of single InAs/GaAs quantum dots (QDs) in the presence of an applied ...
Surface modification is a versatile and effective route towards improving functional and structural ...
This article presents a theoretical study of the electronic, impurity-related, and nonlinear optical...
The exchange interaction between band carriers and electrons from the d-shell of a single magnetic i...