We report on the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped colloidal PbS quantum dots (QDs) by electron spin resonance. We show that the phase memory time,TM, is limited by Mn-Mn dipolar interactions, hyperfine interactions of the protons (H1) on the QD capping ligands with Mn ions in their proximity (<1 nm), and surface phonons originating from thermal fluctuations of the capping ligands. In the low Mn concentration limit and at low temperature, we achieve a long phase memory time constant TM�0.9μs, thus enabling the observation of Rabi oscillations. Our findings suggest routes to the rational design of magnetic colloidal QDs with phase memory times exceeding the current limits of relevance for the...
Colloidal impurity-doped quantum dots (QDs) are attractive model systems for testing the fundamental...
Hyperfine interactions in a single Mn-ion confined in a quantum dot (QD) are exploited to create a q...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
We report on the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped co...
We report on the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped co...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
Colloidal quantum dots (QDs) allow for the tuning of dopant concentration as well as flexibility ...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
Colloidal impurity-doped quantum dots (QDs) are attractive model systems for testing the fundamental...
Hyperfine interactions in a single Mn-ion confined in a quantum dot (QD) are exploited to create a q...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
We report on the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped co...
We report on the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped co...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
Colloidal quantum dots (QDs) allow for the tuning of dopant concentration as well as flexibility ...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
Colloidal impurity-doped quantum dots (QDs) are attractive model systems for testing the fundamental...
Hyperfine interactions in a single Mn-ion confined in a quantum dot (QD) are exploited to create a q...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...