论文标题
通过对称性量化NV中心光谱扩散
Quantifying NV-center Spectral Diffusion by Symmetry
论文作者
论文摘要
可以利用钻石中氮空位(NV)中心缺陷的光谱狭窄,旋转依赖性的光学转变,用于量子网络应用。这种网络方案的关键是产生难以区分的光子。有两个挑战限制了此类系统中的可伸缩性:由局部应变变化引起的光学转变频率的缺陷到缺陷的变化,以及光频率对附近电荷陷阱的光激发引起的重复测量的光谱扩散。在这项实验研究中,我们采用了一种量化光谱扩散和应变的群体理论方法,将每个方法分解为与NV中心的Jahn Teller对称性相对应的组件。我们研究应变,光谱扩散和深度与表面的深度之间的相关性,发现应变和光谱扩散分别以纵向扰动为主。我们还发现横向应变与总光谱扩散之间存在弱负相关性,这表明横向应变可提供一定程度的保护免受光谱扩散的保护。此外,我们发现随着钻石大块深度的增加,光谱扩散变得更加明显。我们用于量化光谱扩散的对称性化技术对于理解给定的纳米级电荷陷阱环境如何影响光谱扩散和制定缓解策略是有价值的。
The spectrally narrow, spin-dependent optical transitions of nitrogen vacancy (NV) center defects in diamond can be harnessed for quantum networking applications. Key to such networking schemes is the generation of indistinguishable photons. Two challenges limit scalability in such systems: defect-to-defect variations of the optical transition frequencies caused by local strain variation, and spectral diffusion of the optical frequencies on repeated measurement caused by photoexcitation of nearby charge traps. In this experimental study we undertake a group theoretic approach to quantifying spectral diffusion and strain, decomposing each into components corresponding to Jahn-Teller symmetries of the NV center. We investigate correlations between the components of strain, spectral diffusion, and depth from surface, finding that strain and spectral diffusion are each dominated by longitudinal perturbations. We also find a weak negative correlation between transverse static strain and total spectral diffusion suggesting that transverse strain provides some degree of protection from spectral diffusion. Additionally, we find that spectral diffusion becomes more pronounced with increasing depth in the diamond bulk. Our symmetry-decomposed technique for quantifying spectral diffusion can be valuable for understanding how a given nanoscale charge trap environment influences spectral diffusion and for developing strategies of mitigation.