Indirect interaction of 13C nuclear spins in diamond with NV centers: simulation of the full J-coupling tensors

Alexander Nizovtsev, A. Pushkarchuk, Semen Kuten, D. Michels, D. Lyakhov, Nikolai Kargin, S. Kilin
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Abstract

Recent experiments on the detection, imaging, characterization and control of multiple 13C nuclear spins, as well as of individual 13C–13C dimers in diamond using a single nitrogen-vacancy (NV) center as a sensor, along with the impressive progress in increasing the spectral resolution of such sensor (up to sub-Hertz), have created a request for detailed knowledge of all possible spin interactions in the studied systems. Here, we focus on the indirect interaction (J-coupling) of 13C nuclear spins in diamond, which was not previously taken into account in studies of NV centers. Using two different levels of the density functional theory (DFT), we simulated the full tensors nJKL (K, L = X, Y,Z), describing n-bond J-coupling of nuclear spins 13C in H-terminated diamond-like clusters C10H16 (adamantane) and C35H36, as well as in the cluster C33[NV−]H36 hosting the negatively charged NV− center. We found that, in addition to the usually considered isotropic scalar nJ-coupling constant, the anisotropic contributions to the nJ-coupling tensor are essential. We also showed that the presence of the NV center affects the J-coupling characteristics, especially in the case of 13C–13C pairs located near the vacancy of the NV center.
金刚石中 13C 核自旋与 NV 中心的间接相互作用:模拟全 J 耦合张量
最近,利用单个氮空位(NV)中心作为传感器,对金刚石中的多个 13C 核自旋以及单个 13C-13C 二聚体进行了探测、成像、表征和控制实验,同时在提高此类传感器的光谱分辨率(达到亚赫兹)方面取得了令人瞩目的进展,因此需要详细了解所研究系统中所有可能的自旋相互作用。在此,我们将重点研究金刚石中 13C 核自旋的间接相互作用(J 耦合),这在之前的 NV 中心研究中并未考虑到。我们使用两种不同水平的密度泛函理论(DFT)模拟了全张量 nJKL(K, L = X, Y,Z),描述了 H 端类金刚石簇 C10H16(金刚烷)和 C35H36 中 13C 核自旋的 n 键 J 耦合,以及簇 C33[NV-]H36 中承载负电荷的 NV- 中心。我们发现,除了通常认为的各向同性标量 nJ 耦合常数之外,各向异性对 nJ 耦合张量的贡献也至关重要。我们还发现,NV 中心的存在会影响 J 耦合特性,尤其是在 13C-13C 对位于 NV 中心空位附近的情况下。
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