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Magnetic field noise analyses generated by the interactions between a nitrogen vacancy center diamond and surface and bulk impurities

机译:通过氮空缺中心金刚石和表面和散装杂质之间的相互作用产生的磁场噪声分析

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摘要

We investigated the mechanism of magnetic noise due to both surface and bulk impurities. For surface noise, we apply the Langevin method to spin fluctuation theory to calculate the noise for paramagnetic surface impurities absorbed in a thin layer of water. We find that the mechanisms generating noise are spin flip and spin precession which depend on impurity spin relaxation and spin precession time. For the bulk noise, we consider carbon-13 and nitrogen as impurities and employ the correlated-cluster expansion to calculate noise. Carbon-13 noise is a few orders of magnitude larger than nitrogen due to the higher impurity density in the typical NV center diamond system. We also find that the noise in the secular approximation underestimates noise under low applied magnetic field. Overall, the major source of magnetic field noise is spin precession noise, which is more than five orders of magnitude larger than the spin flip noise.
机译:我们研究了表面杂质和体杂质产生磁噪声的机理。对于表面噪声,我们将朗之万方法应用于自旋涨落理论,以计算在薄层水中吸收的顺磁性表面杂质的噪声。我们发现产生噪声的机制是自旋翻转和自旋进动,这取决于杂质自旋弛豫和自旋进动时间。对于体噪声,我们考虑碳13和氮作为杂质,并采用相关的簇扩展来计算噪声。由于在典型的NV中心金刚石系统中杂质密度较高,碳-13噪声比氮大几个数量级。我们还发现,长期近似中的噪声低估了低外加磁场下的噪声。总的来说,磁场噪声的主要来源是自旋进动噪声,它比自旋翻转噪声大五个数量级以上。

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