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      Boundary between the thermal and statistical polarization regimes in a nuclear spin ensemble

      Applied physics letters
      AIP Publishing

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          Quantized conductance of point contacts in a two-dimensional electron gas

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            Nanoscale magnetic resonance imaging.

            We have combined ultrasensitive magnetic resonance force microscopy (MRFM) with 3D image reconstruction to achieve magnetic resonance imaging (MRI) with resolution <10 nm. The image reconstruction converts measured magnetic force data into a 3D map of nuclear spin density, taking advantage of the unique characteristics of the "resonant slice" that is projected outward from a nanoscale magnetic tip. The basic principles are demonstrated by imaging the (1)H spin density within individual tobacco mosaic virus particles sitting on a nanometer-thick layer of adsorbed hydrocarbons. This result, which represents a 100 million-fold improvement in volume resolution over conventional MRI, demonstrates the potential of MRFM as a tool for 3D, elementally selective imaging on the nanometer scale.
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              Magnetic resonance force microscopy

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                Journal
                10.1063/1.4892361

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