Decoherence imaging of spin ensembles using a scanning single-electron spin in diamond

The nitrogen-vacancy (NV) defect center in diamond has demonstrated great capability for nanoscale magnetic sensing and imaging for both static and periodically modulated target fields. However, it remains a challenge to detect and image randomly fluctuating magnetic fields. Recent theoretical and n...

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Veröffentlicht in:Scientific reports 2015-01, Vol.5 (1), p.8119-8119, Article 8119
Hauptverfasser: Luan, Lan, Grinolds, Michael S., Hong, Sungkun, Maletinsky, Patrick, Walsworth, Ronald L., Yacoby, Amir
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Sprache:eng
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Zusammenfassung:The nitrogen-vacancy (NV) defect center in diamond has demonstrated great capability for nanoscale magnetic sensing and imaging for both static and periodically modulated target fields. However, it remains a challenge to detect and image randomly fluctuating magnetic fields. Recent theoretical and numerical works have outlined detection schemes that exploit changes in decoherence of the detector spin as a sensitive measure for fluctuating fields. Here we experimentally monitor the decoherence of a scanning NV center in order to image the fluctuating magnetic fields from paramagnetic impurities on an underlying diamond surface. We detect a signal corresponding to roughly 800 μ B in 2 s of integration time, without any control on the target spins and obtain magnetic-field spectral information using dynamical decoupling techniques. The extracted spatial and temporal properties of the surface paramagnetic impurities provide insight to prolonging the coherence of near-surface qubits for quantum information and metrology applications.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep08119