We assign the blinking of nanocrystals to electron tunneling towards a uniform spatial distribution of traps. This naturally explains the power-law distribution of off times, and the power-law correlation function we measured on uncapped CdS dots. Capped dots, on the other hand, present extended on times leading to a radically different correlation function. This is readily described in our model by involving two different, dark and bright, charged states. Coulomb blockade prevents further ionization of the charged dot, thus giving rise to long, power-law distributed off and on times
In this study, the dependence of sample size and light intensity on the fluorescence intermittency o...
In the charging model the fluorescence intermittency observed in semiconductor nanocrystals is expla...
Semiconductor nanocrystals emit light intermittently; i.e., they “blink,” under steady illumination....
We assign the blinking of nanocrystals to electron tunneling towards a uniform spatial distribution ...
The antibunching and blinking from a single CdSe/ZnS nanocrystal with an emission wavelength of 655 ...
We report the observation of power law dynamics on nanosecond to microsecond timescales in the fluor...
Time-resolved fluorescence is measured for single semiconductor nanocrystals with a range of composi...
Since its initial discovery just over a decade ago, blinking of semiconductor nanocrystals has typic...
We have investigated the optical properties of single CdSe/ZnS nanocrystals by conducting combinatio...
ON-OFF intermittency or blinking is a phenomenon observed in single quantum emitters, which reduces ...
Memory effects in single nanocrystal fluorescence blinking are investigated as a function of the on-...
This thesis addresses the observed fluorescence intermittency of single semiconductor nanocrystals, ...
The photoluminescence (PL) of single emitters like semiconductor quantum dots (QDs) shows PL intermi...
Photo-luminescence (P-L) intermittency (or blinking) in semiconductor nanocrystals (NCs), a phenomen...
Semiconductor quantum dots have a vast array of applications: as fluorescent labels in biological sy...
In this study, the dependence of sample size and light intensity on the fluorescence intermittency o...
In the charging model the fluorescence intermittency observed in semiconductor nanocrystals is expla...
Semiconductor nanocrystals emit light intermittently; i.e., they “blink,” under steady illumination....
We assign the blinking of nanocrystals to electron tunneling towards a uniform spatial distribution ...
The antibunching and blinking from a single CdSe/ZnS nanocrystal with an emission wavelength of 655 ...
We report the observation of power law dynamics on nanosecond to microsecond timescales in the fluor...
Time-resolved fluorescence is measured for single semiconductor nanocrystals with a range of composi...
Since its initial discovery just over a decade ago, blinking of semiconductor nanocrystals has typic...
We have investigated the optical properties of single CdSe/ZnS nanocrystals by conducting combinatio...
ON-OFF intermittency or blinking is a phenomenon observed in single quantum emitters, which reduces ...
Memory effects in single nanocrystal fluorescence blinking are investigated as a function of the on-...
This thesis addresses the observed fluorescence intermittency of single semiconductor nanocrystals, ...
The photoluminescence (PL) of single emitters like semiconductor quantum dots (QDs) shows PL intermi...
Photo-luminescence (P-L) intermittency (or blinking) in semiconductor nanocrystals (NCs), a phenomen...
Semiconductor quantum dots have a vast array of applications: as fluorescent labels in biological sy...
In this study, the dependence of sample size and light intensity on the fluorescence intermittency o...
In the charging model the fluorescence intermittency observed in semiconductor nanocrystals is expla...
Semiconductor nanocrystals emit light intermittently; i.e., they “blink,” under steady illumination....