Nuclear effects in Kerr rotation-detected magnetic resonance of electrons in GaAs

We have studied nuclear effects on electron spins in lightly doped n-GaAs bulk and quantum well samples using optically detected magnetic resonance, with the optical detection done via Kerr rotation. The magnetic resonance signal allowed us to measure the electron T 2 ∗ lifetimes and g -factors. We...

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Veröffentlicht in:Solid state communications 2010-02, Vol.150 (5), p.244-247
Hauptverfasser: Heaton, B., Colton, J.S., Jenson, D.N., Johnson, M.J., Bracker, A.S.
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Sprache:eng
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Zusammenfassung:We have studied nuclear effects on electron spins in lightly doped n-GaAs bulk and quantum well samples using optically detected magnetic resonance, with the optical detection done via Kerr rotation. The magnetic resonance signal allowed us to measure the electron T 2 ∗ lifetimes and g -factors. We observed strong dynamic nuclear polarization, which was controllable via nuclear magnetic resonance techniques. We measured the nuclear spin relaxation time ( T 1 ) by monitoring the changing Overhauser field in time, and were able to perform combined electron and nuclear resonance.
ISSN:0038-1098
1879-2766
DOI:10.1016/j.ssc.2009.11.019