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          Single-proton spin detection by diamond magnetometry.

          Extending magnetic resonance imaging to the atomic scale has been a long-standing aspiration, driven by the prospect of directly mapping atomic positions in molecules with three-dimensional spatial resolution. We report detection of individual, isolated proton spins by a nitrogen-vacancy (NV) center in a diamond chip covered by an inorganic salt. The single-proton identity was confirmed by the Zeeman effect and by a quantum coherent rotation of the weakly coupled nuclear spin. Using the hyperfine field of the NV center as an imaging gradient, we determined proton-NV distances of less than 1 nm.
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            Author and article information

            Journal
            Science
            Science
            American Association for the Advancement of Science (AAAS)
            0036-8075
            1095-9203
            January 08 2015
            January 08 2015
            : 347
            : 6218
            : 139
            Article
            10.1126/science.347.6218.139-a
            8cba8f47-b7f5-457a-b7a9-60f66e3ed48b
            © 2015
            History

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