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Enhancement of nuclear spin coherence times by driving dynamic nuclear polarization at defect centers in solids

机译:固体缺陷中心驾驶动态核极化来增强核自旋相干时间

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The hyperpolarization of nuclear spins can enable powerful imaging and sensing techniques provided the hyperpolarization is sufficiently long lived. Recent experiments on nanodiamond C-13 nuclear spins demonstrate that relaxation times can be extended by three orders of magnitude by building up dynamic nuclear polarization (DNP) through the driving of electron-nuclear flip-flop processes at defect centers. This finding raises the question of whether the nuclear spin coherence times are also impacted by this hyperpolarization process. Here, we theoretically examine the effect of DNP on the nuclear spin coherence times as a function of the hyperpolarization drive time. We do this by developing a microscopic theory of DNP in a nuclear spin ensemble coupled to microwave-driven defect centers in solids and subject to spin diffusion mediated by internuclear dipolar interactions. We find that, similarly to relaxation times, the nuclear spin coherence times can be increased substantially by a few orders of magnitude depending on the driving time. Our theoretical model and results will be useful for current and future experiments on enhancing nuclear spin coherence times via DNP.
机译:提供核旋转的超极化可以实现强大的成像和传感技术,只要超极化足够长的寿命。最近关于纳米金刚胺C-13核旋转的实验表明,通过在缺陷中心的电子核触发器过程中建立动态核极化(DNP),可以通过在缺陷中心驱动来延长弛豫时间。这一发现提出了这种超极化过程对核自旋相干时间也影响的问题。在这里,理论上是根据超极化驱动时间的函数检查DNP对核自旋相干时间的影响。我们通过在核旋转集合中开发DNP的微观理论,耦合到微波驱动的缺陷中心的DNP中的微观理论,并受到通过间隙偶极相互作用介导的旋转扩散的影响。我们发现,类似于放松时间,根据驾驶时间,核自旋相干时间可以基本上增加几个数量级。我们的理论模型和结果对于通过DNP加强核自旋相干时间的目前和未来的实验是有用的。

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  • 来源
    《Physical review 》 |2019年第20期| 205423.1-205423.12| 共12页
  • 作者单位

    Virginia Tech Dept Phys Blacksburg VA 24061 USA;

    Univ Sydney ARC Ctr Excellence Engn Quantum Syst Sch Phys Sydney NSW 2006 Australia;

    Univ Sydney ARC Ctr Excellence Engn Quantum Syst Sch Phys Sydney NSW 2006 Australia;

    Univ Sydney ARC Ctr Excellence Engn Quantum Syst Sch Phys Sydney NSW 2006 Australia;

    Virginia Tech Dept Phys Blacksburg VA 24061 USA;

    Virginia Tech Dept Phys Blacksburg VA 24061 USA;

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