We report a low temperature spectroscopic study of the lowest-energy exciton states in single CdSe/ZnS colloidal nanocrystals (NCs). In their neutral charge state, the zero-phonon lines of the lowest two levels of the band-edge exciton fine structure are directly observed in the photoluminescence (PL) spectrum. The attribution of these lines is confirmed by polarization-resolved studies of the PL spectrum and decay. We also identified the emission from charged NCs which displays a single zero-phonon line ~17 meV redshifted with respect to the neutral NC emission lines. This bright trion state has a lifetime which ranges from 1.5 to 4.5 ns.PROtocoles quantiques utilisant des Sources à Photons unIQue
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
CdSe nanocrystals are attractive for many applications such as nanoscale electronics, laser technolo...
As colloidal semiconductor nanocrystals are developed for a wider range of diverse applications, it ...
We report a low temperature spectroscopic study of the lowest-energy exciton states in single CdSe/Z...
We report a spectroscopic study of highly photostable individual CdSe-ZnS colloidal nanocrystals. At...
We report a spectroscopic study of highly photostable individual CdSe-ZnS colloidal nanocrystals. At...
We report a spectroscopic study of highly photostable individual CdSe-ZnS colloidal nanocrystals. At...
We study the optical properties of the lowest-energy exciton states in highly photostable individual...
We study the optical properties of the lowest-energy exciton states in highly photostable individual...
We study the optical properties of the lowest-energy exciton states in highly photostable individual...
We report direct observation of the lowest two states of the band-edge exciton fine structure in the...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
CdSe nanocrystals are attractive for many applications such as nanoscale electronics, laser technolo...
As colloidal semiconductor nanocrystals are developed for a wider range of diverse applications, it ...
We report a low temperature spectroscopic study of the lowest-energy exciton states in single CdSe/Z...
We report a spectroscopic study of highly photostable individual CdSe-ZnS colloidal nanocrystals. At...
We report a spectroscopic study of highly photostable individual CdSe-ZnS colloidal nanocrystals. At...
We report a spectroscopic study of highly photostable individual CdSe-ZnS colloidal nanocrystals. At...
We study the optical properties of the lowest-energy exciton states in highly photostable individual...
We study the optical properties of the lowest-energy exciton states in highly photostable individual...
We study the optical properties of the lowest-energy exciton states in highly photostable individual...
We report direct observation of the lowest two states of the band-edge exciton fine structure in the...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
We use a combination of low-temperature magneto-optical and lifetime spectroscopies to study the ban...
CdSe nanocrystals are attractive for many applications such as nanoscale electronics, laser technolo...
As colloidal semiconductor nanocrystals are developed for a wider range of diverse applications, it ...