We report on an example of confined magnetic ions with long spin coherence near room temperature. This was achieved by confining single Mn2+ spins in colloidal semiconductor quantum dots (QDs) and by dispersing the QDs in a proton-spin free matrix. The controlled suppression of Mn–Mn interactions and minimization of Mn–nuclear spin dipolar interactions result in unprecedentedly long phase memory (TM ~ 8 μs) and spin–lattice relaxation (T1 ~ 10 ms) time constants for Mn2+ ions at T = 4.5 K, and in electron spin coherence observable near room temperature (TM ~ 1 μs)
This thesis presents experimental investigations into the underlying mechanisms limiting the spin st...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The time-window for processing electron spin information (spintronics) in solid-state quantum elect...
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...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
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 the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped co...
Colloidal quantum dots (QDs) allow for the tuning of dopant concentration as well as flexibility ...
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...
This work is devoted to the studies of spin dynamics of magnetic Mn ions embedded in low-dimensional...
This thesis presents experimental investigations into the underlying mechanisms limiting the spin st...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The time-window for processing electron spin information (spintronics) in solid-state quantum elect...
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...
We report on an example of confined magnetic ions with long spin coherence near room temperature. Th...
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 the spin-lattice interaction and coherent manipulation of electron spins in Mn-doped co...
Colloidal quantum dots (QDs) allow for the tuning of dopant concentration as well as flexibility ...
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...
This work is devoted to the studies of spin dynamics of magnetic Mn ions embedded in low-dimensional...
This thesis presents experimental investigations into the underlying mechanisms limiting the spin st...
The nanoscale design of quantum dots (QDs) requires advanced analytical techniques. However, those t...
The time-window for processing electron spin information (spintronics) in solid-state quantum elect...