论文标题

NV钻石磁力测定法中的Ramsey信封调制

Ramsey Envelope Modulation in NV Diamond Magnetometry

论文作者

Oon, Jner Tzern, Tang, Jiashen, Hart, Connor A., Olsson, Kevin S., Turner, Matthew J., Schloss, Jennifer M., Walsworth, Ronald L.

论文摘要

钻石中的氮呈(NV)旋转集合提供了一个先进的磁传感平台,并在物理和生命科学中应用。由于其更简单的超细结构,因此,同位素工程化的$^{15} $ NV钻石的开发比自然发生的$^{14} $ nv提供了优点。但是,对于需要与传感NV轴不符的偏置磁场的传感方式,在$^{15} $ n核自旋中缺乏四极力矩,从而在$^{15} $ nv spin Evolution的时间依赖性测量中发出了明显的包膜调节效应。虽然对自旋回波实验中的这种行为进行了充分的研究,但在Ramsey测量中的类似效应以及对磁力测定法的影响仍然不足。在这里,我们使用对核自旋上有效磁场的简单矢量描述来得出调制的$^{15} $ nv Ramsey对未对准偏置场的响应。然后将预测的调制特性与实验结果进行比较,发现如果未得到解决,则显示出明显的磁敏感性丧失。我们证明了NV $ s = 1 $电子自旋状态的双量子相干性极大地抑制了这些包膜调制,同时证明了对其他寄生效应的弹性,例如应变异质性和温度变化。

Nitrogen-vacancy (NV) spin ensembles in diamond provide an advanced magnetic sensing platform, with applications in both the physical and life sciences. The development of isotopically engineered $^{15}$NV diamond offers advantages over naturally occurring $^{14}$NV for magnetometry, due to its simpler hyperfine structure. However, for sensing modalities requiring a bias magnetic field not aligned with the sensing NV axis, the absence of a quadrupole moment in the $^{15}$N nuclear spin leads to pronounced envelope modulation effects in time-dependent measurements of $^{15}$NV spin evolution. While such behavior in spin echo experiments are well studied, analogous effects in Ramsey measurements and the implications for magnetometry remain under-explored. Here, we derive the modulated $^{15}$NV Ramsey response to a misaligned bias field, using a simple vector description of the effective magnetic field on the nuclear spin. The predicted modulation properties are then compared to experimental results, revealing significant magnetic sensitivity loss if unaddressed. We demonstrate that double-quantum coherences of the NV $S=1$ electronic spin states dramatically suppress these envelope modulations, while additionally proving resilient to other parasitic effects such as strain heterogeneity and temperature shifts.

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