Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including magnetic interactions, crystal field splitting, Pauli exclusion, and phonons. Identification of the exact physical mechanism which couples first to the dark ground state of colloidal quantum dots, inducing a significant reduction in the radiative lifetime at low temperatures, has thus been under significant debate. Here we present measurements of this phenomenon on a variety of materials as well as on colloidal heterostructures. These show unambiguously that the dominant mechanism is coupling of the ground state to a confined acoustic phonon, and that this mechanism is universal
We report systematic measurements of the dephasing of the excitonic ground-state transition in a ser...
We report systematic measurements of the dephasing of the excitonic ground-state transition in a ser...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
The photoluminescence emission by mesoscopic condensed matter is ultimately dictated by the fine-str...
We report on the temperature and size dependence of the photoluminescence of core CdTe colloidal qua...
Semiconductor quantum dots have long been considered artificial atoms, but despite the overarching a...
The direct coupling of excited electronic states to optical phonons in single CdSe colloidal quantum...
Semiconductor quantum dots have long been considered artificial atoms, but despite the overarching a...
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...
Charged quantum dots provide an important platform for a range of emerging quantum technologies. Col...
Visual color changes between 300 and 510 K were observed in the photoluminescence (PL) of colloidal ...
Light emission of semiconductor nanocrystals is a complex process, depending on many factors, among ...
We study experimentally the influence of temperature on the emission characteristics of quantum dot-...
We report systematic measurements of the dephasing of the excitonic ground-state transition in a ser...
We report systematic measurements of the dephasing of the excitonic ground-state transition in a ser...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...
Multiple energy scales contribute to the radiative properties of colloidal quantum dots, including m...
The photoluminescence emission by mesoscopic condensed matter is ultimately dictated by the fine-str...
We report on the temperature and size dependence of the photoluminescence of core CdTe colloidal qua...
Semiconductor quantum dots have long been considered artificial atoms, but despite the overarching a...
The direct coupling of excited electronic states to optical phonons in single CdSe colloidal quantum...
Semiconductor quantum dots have long been considered artificial atoms, but despite the overarching a...
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...
Charged quantum dots provide an important platform for a range of emerging quantum technologies. Col...
Visual color changes between 300 and 510 K were observed in the photoluminescence (PL) of colloidal ...
Light emission of semiconductor nanocrystals is a complex process, depending on many factors, among ...
We study experimentally the influence of temperature on the emission characteristics of quantum dot-...
We report systematic measurements of the dephasing of the excitonic ground-state transition in a ser...
We report systematic measurements of the dephasing of the excitonic ground-state transition in a ser...
We develop a general microscopic theory describing the phonon decoherence of quantum dots and indist...