Publication | Open Access
Ultraslow Electron Spin Dynamics in GaAs Quantum Wells Probed by Optically Pumped NMR
75
Citations
12
References
1998
Year
Electron Spin TemperatureEngineeringMagnetic ResonanceSpin DynamicSpin PhenomenonOptically Pumped NmrElectron Paramagnetic ResonanceQuantum MaterialsQuantum SciencePhysicsQuantum DeviceQuantum MagnetismSpintronicsKnight ShiftNatural SciencesApplied PhysicsCondensed Matter PhysicsDynamic Nuclear PolarizationNmr Pulse Parameters
Optically pumped nuclear magnetic resonance (OPNMR) measurements were performed in two different electron-doped multiple quantum well samples near the fractional quantum Hall effect ground state nu = 13. Below 0.5 kelvin, the spectra provide evidence that spin-reversed charged excitations of the nu = 13 ground state are localized over the NMR time scale of about 40 microseconds. Furthermore, by varying NMR pulse parameters, the electron spin temperature (as measured by the Knight shift) could be driven above the lattice temperature, which shows that the value of the electron spin-lattice relaxation time tau1s is between 100 microseconds and 500 milliseconds at nu = 13.
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