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Spin decoherence and electron spin bath noise of a nitrogen-vacancy center in diamond

机译:金刚石中氮空位中心的自旋退相干和电子自旋浴噪声

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We theoretically investigate spin decoherence of a single nitrogen-vacancy (NV) center in diamond. Using the spin coherent-state P -representation method, we simulate coherence evolution of the NV center coupled to surrounding nitrogen electron (N) spins. In the system, the strength of N-N coupling is the same order as that of NV-N coupling (the strong intrabath coupling regime). We find that spin decoherence time as well as free-induction decay of the NV center depend on the spatial configuration of N spins. Both the spin decoherence rate (1/T_2) and dephasing rate (1/T_2~*) of the NV center increase linearly with the concentration of the N spins. Using the P-representation method, we also demonstrate extracting the noise spectrum of the N spin bath. The capability to calculate the noise spectrum will provide promising pathways to suppress decoherence of spin systems in the strong intrabath coupling regime.
机译:我们从理论上研究金刚石中单个氮空位(NV)中心的自旋退相干。使用自旋相干态P表示方法,我们模拟了耦合到周围氮电子(N)自旋的NV中心的相干演化。在系统中,N-N耦合的强度与NV-N耦合(强浴内耦合机制)的强度相同。我们发现自旋退相干时间以及NV中心的自由感应衰减取决于N自旋的空间配置。 NV中心的自旋退相干率(1 / T_2)和移相率(1 / T_2〜*)均随N自旋的浓度线性增加。使用P表示方法,我们还演示了提取N自旋浴的噪声谱。计算噪声频谱的能力将提供有希望的途径,以抑制强浴内耦合机制中自旋系统的退相干。

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