Charged quantum dots provide an important platform for a range of emerging quantum technologies. Colloidal quantum dots in particular offer unique advantages for such applications (facile synthesis, manipulation and compatibility with a wide range of environments), especially if stable charged states can be harnessed in these materials. Here we engineer the CdSe nanocrystal core and shell structure to efficiently ionize at cryogenic temperatures, resulting in trion emission with a single sharp zero-phonon line and a mono exponential decay. Magneto-optical spectroscopy enables direct determination of electron and hole g-factors. Spin relaxation is observed in high fields, enabling unambiguous identification of the trion charge. Importantly, ...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
Non-magnetic colloidal nanostructures can demonstrate magnetic properties typical for diluted magnet...
Large surface-to-volume ratios of semiconductor nanocrystals cause susceptibility to charge trapping...
Charged quantum dots provide an important platform for a range of emerging quantum technologies. Col...
Charged quantum dots provide an important platform for a range of emerging quantum technologies. Col...
We report direct observation of the lowest two states of the band-edge exciton fine structure in the...
Les applications émergentes des nanocristaux de CdSe nécessitent une compréhension approfondie des p...
Les applications émergentes des nanocristaux de CdSe nécessitent une compréhension approfondie des p...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
Non-magnetic colloidal nanostructures can demonstrate magnetic properties typical for diluted magnet...
The band-edge exciton in elongated CdSe nanocrystals is composed of an upper and lower manifold asso...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
Non-magnetic colloidal nanostructures can demonstrate magnetic properties typical for diluted magnet...
Large surface-to-volume ratios of semiconductor nanocrystals cause susceptibility to charge trapping...
Charged quantum dots provide an important platform for a range of emerging quantum technologies. Col...
Charged quantum dots provide an important platform for a range of emerging quantum technologies. Col...
We report direct observation of the lowest two states of the band-edge exciton fine structure in the...
Les applications émergentes des nanocristaux de CdSe nécessitent une compréhension approfondie des p...
Les applications émergentes des nanocristaux de CdSe nécessitent une compréhension approfondie des p...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
We have measured the intrinsic exciton dephasing in high-quality zinc blende CdSe/CdS colloidal quan...
Non-magnetic colloidal nanostructures can demonstrate magnetic properties typical for diluted magnet...
The band-edge exciton in elongated CdSe nanocrystals is composed of an upper and lower manifold asso...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
Non-magnetic colloidal nanostructures can demonstrate magnetic properties typical for diluted magnet...
Large surface-to-volume ratios of semiconductor nanocrystals cause susceptibility to charge trapping...