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Highly selective detection of individual nuclear spins with rotary echo on an electron spin probe

机译:通过电子自旋探针上的旋转回波高度选择性地检测单个核自旋

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We consider an electronic spin, such as a nitrogen-vacancy center in diamond, weakly coupled to a large number of nuclear spins, and subjected to the Rabi driving with a periodically alternating phase. We show that by switching the driving phase synchronously with the precession of a given nuclear spin, the interaction to this spin is selectively enhanced, while the rest of the bath remains decoupled. The enhancement is of resonant character. The key feature of the suggested scheme is that the width of the resonance is adjustable, and can be greatly decreased by increasing the driving strength. Thus, the resonance can be significantly narrowed, by a factor of 10–100 in comparison with the existing detection methods. Significant improvement in selectivity is explained analytically and confirmed by direct numerical many-spin simulations. The method can be applied to a wide range of solid-state systems.
机译:我们考虑电子自旋,例如金刚石中的氮空位中心,与大量核自旋弱耦合,并且受到周期性交替相的拉比驱动。我们表明,通过与给定核自旋的进动同步切换驱动阶段,与该自旋的相互作用被选择性地增强,而镀液的其余部分则保持解耦。增强具有共振特性。建议方案的关键特征是谐振的宽度是可调的,并且可以通过增加驱动强度来大大减小。因此,与现有的检测方法相比,共振可以大大缩小10-100倍。分析方法解释了选择性的显着提高,并通过直接数值多旋转模拟证实了选择性的提高。该方法可以应用于广泛的固态系统。

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