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Method for atomic-layer-resolved measurement of polarization fields by nuclear magnetic resonance

机译:原子层分辨核磁共振法测量极化场的方法

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摘要

A nuclear magnetic resonance (NMR) method of probing the dielectric response to an alternating electric field is described, which is applicable to noncentrosymmetric sites with nuclear spin I>1/2. A radio-frequency electric field induces a linear quadrupole Stark effect at a multiple of the nuclear Larmor frequency. This perturbation is applied in the windows of an NMR multiple-pulse line-narrowing sequence in such a way that the resulting nonsecular spin interactions are observed as first-order quadrupole satellites, free of line broadening by the usual dominant static interactions. A simulation of the 69Ga spectrum for the nuclei within the two-dimensional electron gas of a 10 nm quantum well predicts resolution of individual atomic layers in single devices due to the spatial dependence of the polarization response of the quantum-confined carriers to the applied field. This method is part of a more general strategy, perturbations observed with enhanced resolution NMR. Experimentally realized examples in GaAs include spectrally resolving electron probability densities surrounding optically relevant point defects and probing the changes in radial electric field associated with the light-on and light-off states of these shallow traps. Adequate sensitivity for such experiments in individual epitaxial structures is achieved by optical nuclear polarization followed by time-domain NMR observed via nuclear Larmor-beat detection of luminescence.
机译:描述了一种探测对交变电场的介电响应的核磁共振(NMR)方法,该方法适用于核自旋I> 1/2的非中心对称位点。射频电场在核拉莫尔频率的倍数处引起线性四极斯塔克效应。这种扰动以这样的方式应用到NMR多脉冲线变窄序列的窗口中:以这种方式观察到的非世俗自旋相互作用被视为一阶四极卫星,没有通常的主要静态相互作用引起的线展宽。 10nm量子阱的二维电子气中原子核的69Ga光谱的模拟预测了单个器件中单个原子层的分辨率,这是由于量子受限载流子的极化响应对所施加场的空间依赖性。此方法是更通用策略的一部分,使用增强的NMR观察到扰动。 GaAs中通过实验实现的示例包括在光谱上解析光学相关点缺陷周围的电子概率密度,并探测与这些浅陷阱的开和关状态相关的径向电场的变化。在单个外延结构中进行此类实验的足够灵敏度是通过光学核极化,然后通过核的拉莫尔-搏动检测发光观察到的时域NMR实现的。

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