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Resolving single molecule structures with Nitrogen-vacancy centers in diamond.

机译:用金刚石中的氮空位中心解析单分子结构。

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摘要

We present theoretical proposals for two-dimensional nuclear magnetic resonance spectroscopy protocols based on Nitrogen-vacancy (NV) centers in diamond that are strongly coupled to the target nuclei. Continuous microwave and radio-frequency driving fields together with magnetic field gradients achieve Hartmann-Hahn resonances between NV spin sensor and selected nuclei for control of nuclear spins and subsequent measurement of their polarization dynamics. The strong coupling between the NV sensor and the nuclei facilitates coherence control of nuclear spins and relaxes the requirement of nuclear spin polarization to achieve strong signals and therefore reduced measurement times. Additionally, we employ a singular value thresholding matrix completion algorithm to further reduce the amount of data required to permit the identification of key features in the spectra of strongly sub-sampled data. We illustrate the potential of this combined approach by applying the protocol to a shallowly implanted NV center addressing a small amino acid, alanine, to target specific hydrogen nuclei and to identify the corresponding peaks in their spectra.
机译:我们提出了基于金刚石中氮原子空位(NV)中心的二维核磁共振波谱协议的理论建议,这些中心强烈耦合到目标原子核。连续的微波和射频驱动场以及磁场梯度在NV自旋传感器和选定的核之间实现Hartmann-Hahn共振,以控制核自旋并随后测量其极化动力学。 NV传感器与核之间的强耦合促进了核自旋的相干控制,并放宽了对核自旋极化的要求,以实现强信号,从而减少了测量时间。此外,我们采用奇异值阈值矩阵完成算法来进一步减少所需的数据量,以允许在强次采样数据的光谱中识别关键特征。我们通过将该协议应用于浅植入的NV中心,以解决一个小氨基酸丙氨酸的问题,以特定的氢核为目标,并确定其光谱中的相应峰,从而说明了该组合方法的潜力。

著录项

  • 作者

    Kost M; Cai J; Plenio MB;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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