Interaction with nuclear spins leads to decoherence and information loss in solid-state electron-spin qubits. One particular, ineradicable source of electron decoherence arises from decoherence of the nuclear spin bath, driven by nuclear–nuclear dipolar interactions. Owing to its many-body nature nuclear decoherence is difficult to predict, especially for an important class of strained nanostructures where nuclear quadrupolar effects have a significant but largely unknown impact. Here, we report direct measurement of nuclear spin bath coherence in individual self-assembled InGaAs/GaAs quantum dots: spin-echo coherence times in the range 1.2–4.5 ms are found. Based on these values, we demonstrate that strain-induced quadrupolar interaction...
Self-assembled quantum dots (QDs) are born out of lattice mismatched ingredients where strain plays ...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
One of the key challenges in spectroscopy is the inhomogeneous broadening that masks the homogeneous...
Dynamics of nuclear spin decoherence and nuclear spin flip-flops in self-assembled InGaAs/GaAs quant...
There is a growing interest in hybrid solid-state quantum systems where nuclear spins, interfaced to...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
The interaction between a confined electron and the nuclei of an optically active quantum dot provid...
The interaction between a confined electron and the nuclei of an optically active quantum dot provid...
The interaction between a confined electron and the nuclei of an optically active quantum dot provid...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
International audienceThe mesoscopic spin system formed by the 104–106 nuclear spins in a semiconduc...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
This thesis presents experimental investigations into the underlying mechanisms limiting the spin st...
Self-assembled quantum dots (QDs) are born out of lattice mismatched ingredients where strain plays ...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
One of the key challenges in spectroscopy is the inhomogeneous broadening that masks the homogeneous...
Dynamics of nuclear spin decoherence and nuclear spin flip-flops in self-assembled InGaAs/GaAs quant...
There is a growing interest in hybrid solid-state quantum systems where nuclear spins, interfaced to...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
The interaction between a confined electron and the nuclei of an optically active quantum dot provid...
The interaction between a confined electron and the nuclei of an optically active quantum dot provid...
The interaction between a confined electron and the nuclei of an optically active quantum dot provid...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
International audienceThe mesoscopic spin system formed by the 104–106 nuclear spins in a semiconduc...
Understanding the decoherence of electron spins in semiconductors due to their interaction with nucl...
This thesis presents experimental investigations into the underlying mechanisms limiting the spin st...
Self-assembled quantum dots (QDs) are born out of lattice mismatched ingredients where strain plays ...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
One of the key challenges in spectroscopy is the inhomogeneous broadening that masks the homogeneous...