We show that by illuminating an InGaAs/GaAs self-assembled quantum dot with circularly polarized light, the nuclei of atoms constituting the dot can be driven into a bistable regime, in which either a thresholdlike enhancement or reduction of the local nuclear field by up to 3 T can be generated by varying the pumping intensity. The excitation power threshold for such a nuclear spin “switch” is found to depend on both the external magnetic and electric fields. The switch is shown to arise from the strong feedback of the nuclear spin polarization on the dynamics of the spin transfer from electrons to the nuclei of the dot
We demonstrate that efficient optical pumping of nuclear spins in semiconductor quantum dots (QDs) ...
4+ pages, 3 figuresWe report on the dynamic nuclear polarization of a single charge-tunable self-ass...
We study experimentally the dependence of dynamic nuclear spin polarization on the power of nonreson...
We show that by illuminating an InGaAs / GaAs self-assembled quantum dot with circularly polar...
In III-V semiconductor nano-structures, the electron and nuclear spin dynamics are strongly coupled....
Th is work present original results of investigation of nuclear spin dynamics in nanostructure with ...
We demonstrate that bistability of the nuclear spin polarization in optically pumped semiconductor q...
Resonant optical excitation of lowest-energy excitonic transitions in self-assembled quantum dots le...
For spin-based quantum computation in semiconductors, dephasing of electron spins by a fluctuating b...
Hyperfine interaction in a quantum dot produces a spin-coupled system between an injected electron a...
We present measurements of the buildup and decay of nuclear spin polarization in a single semiconduc...
International audienceWe report on the influence of the hyperfine interaction on the optical orienta...
We present a scheme for achieving coherent spin squeezing of nuclear spin states in semiconductor qu...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...
We demonstrate that efficient optical pumping of nuclear spins in semiconductor quantum dots (QDs) ...
4+ pages, 3 figuresWe report on the dynamic nuclear polarization of a single charge-tunable self-ass...
We study experimentally the dependence of dynamic nuclear spin polarization on the power of nonreson...
We show that by illuminating an InGaAs / GaAs self-assembled quantum dot with circularly polar...
In III-V semiconductor nano-structures, the electron and nuclear spin dynamics are strongly coupled....
Th is work present original results of investigation of nuclear spin dynamics in nanostructure with ...
We demonstrate that bistability of the nuclear spin polarization in optically pumped semiconductor q...
Resonant optical excitation of lowest-energy excitonic transitions in self-assembled quantum dots le...
For spin-based quantum computation in semiconductors, dephasing of electron spins by a fluctuating b...
Hyperfine interaction in a quantum dot produces a spin-coupled system between an injected electron a...
We present measurements of the buildup and decay of nuclear spin polarization in a single semiconduc...
International audienceWe report on the influence of the hyperfine interaction on the optical orienta...
We present a scheme for achieving coherent spin squeezing of nuclear spin states in semiconductor qu...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...
We demonstrate that efficient optical pumping of nuclear spins in semiconductor quantum dots (QDs) ...
4+ pages, 3 figuresWe report on the dynamic nuclear polarization of a single charge-tunable self-ass...
We study experimentally the dependence of dynamic nuclear spin polarization on the power of nonreson...