Measurement of temporal correlations of the overhauser field in a double quantum dot

In quantum dots made from materials with nonzero nuclear spins, hyperfine coupling creates a fluctuating effective Zeeman field (Overhauser field) felt by electrons, which can be a dominant source of spin qubit decoherence. We characterize the spectral properties of the fluctuating Overhauser field...

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Veröffentlicht in:Physical review letters 2008-12, Vol.101 (23), p.236803-236803, Article 236803
Hauptverfasser: Reilly, D J, Taylor, J M, Laird, E A, Petta, J R, Marcus, C M, Hanson, M P, Gossard, A C
Format: Artikel
Sprache:eng
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Zusammenfassung:In quantum dots made from materials with nonzero nuclear spins, hyperfine coupling creates a fluctuating effective Zeeman field (Overhauser field) felt by electrons, which can be a dominant source of spin qubit decoherence. We characterize the spectral properties of the fluctuating Overhauser field in a GaAs double quantum dot by measuring correlation functions and power spectra of the rate of singlet-triplet mixing of two separated electrons. Away from zero field, spectral weight is concentrated below 10 Hz, with approximately 1/f2 dependence on frequency f. This is consistent with a model of nuclear spin diffusion, and indicates that decoherence can be largely suppressed by echo techniques.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.101.236803