arXiv Analytics

Sign in

arXiv:1211.3242 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Magnetic spin imaging under ambient conditions with sub-cellular resolution

S. Steinert, F. Ziem, L. Hall, A. Zappe, M. Schweikert, A. Aird, G. Balasubramanian, L. Hollenberg, J. Wrachtrup

Published 2012-11-14Version 1

Measuring spins is the corner stone of a variety of analytical techniques including modern magnetic resonance imaging (MRI). The full potential of spin imaging and sensing across length scales is hindered by the achievable signal-to-noise in inductive detection schemes. Here we show that a proximal Nitrogen-Vacancy (NV) ensemble serves as a precision sensing array. Monitoring its quantum relaxation enables sensing of freely diffusing and unperturbed magnetic ions in a microfluidic device. Multiplexed CCD acquisition and an optimized detection scheme enable direct spin noise imaging under ambient conditions with experimental sensitivities down to 1000 statistically polarized spins, of which only 35 ions contribute to a net magnetization, and 20 s acquisition time. We also demonstrate imaging of spin labeled cellular structures with spatial resolutions below 500 nm. Our study marks a major step towards sub-{\mu}m imaging magnetometry and applications in microanalytics, material and life sciences.

Related articles: Most relevant | Search more
arXiv:0910.2596 [cond-mat.mes-hall] (Published 2009-10-14)
Graphene on a hydrophobic substrate: Doping reduction and hysteresis suppression under ambient conditions
arXiv:1904.13274 [cond-mat.mes-hall] (Published 2019-04-30)
Realization of Ordered Magnetic Skyrmions in Thin Films at Ambient Conditions
arXiv:1303.5204 [cond-mat.mes-hall] (Published 2013-03-21, updated 2013-05-28)
Optimizing atomic resolution of force microscopy in ambient conditions