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      High-Resolution NMR Spectroscopy at Large Fields with Nitrogen Vacancy Centers

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          Abstract

          Ensembles of nitrogen-vacancy (NV) centers are used as sensors to detect NMR signals from micron-sized samples at room temperature. In this scenario, the regime of large magnetic fields is especially interesting as it leads to a large nuclear thermal polarisation -- thus, to a strong sensor response even in low concentration samples -- while chemical shifts and J-couplings become more accessible. Nevertheless, this regime remains largely unexplored owing to the difficulties to couple NV-based sensors with high-frequency nuclear signals. In this work, we circumvent this problem with a method that maps the relevant energy shifts in the amplitude of an induced nuclear spin signal that is subsequently transferred to the sensor. This stage is interspersed with free-precession periods of the sample nuclear spins where the sensor does not participate. Thus, our method leads to high spectral resolutions ultimately limited by the coherence of the nuclear spin signal.

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          Author and article information

          Journal
          09 May 2022
          Article
          2205.04150
          58185315-c9dc-4aa3-91e9-66d8f4014251

          http://creativecommons.org/licenses/by/4.0/

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          Custom metadata
          6 pages, 3 figures
          quant-ph

          Quantum physics & Field theory
          Quantum physics & Field theory

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