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Quantitative analysis of spectral characteristics and concentration of ensembles of NV- centers in diamond

机译:钻石中NV中心谱特征的定量分析及集合

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On account of their outstanding photo-luminescence properties, NV- (nitrogen-vacancy) centers in diamond make possible the high-sensitivity detection of physical quantities. The concentration of NV- centers is one of the main factors that affect the sensitivity in detecting macroscopic physical quantities. This paper studied and analyzed the relationship between the dose of electron irradiation and the concentration of NV- centers. We found that after electron irradiation into diamond, luminescence centers of 524.7 nm, 541.1 nm, 578 nm and 648.1 nm were formed, which is necessary for producing NV- centers. After annealing at high temperature (>= 800 degrees C) and in vacuum (>= 10(-7) Pa) on diamond, NV- centers were formed when vacancies were bound by nitrogen atoms. We also obtained the rules of NV- concentration as a function of electron irradiation, which followed Boltzmann distribution. In addition, the number of NV- produced by electron injection was limited by 16 ppm for diamond with a nitrogen content of 100 ppm regardless of the increment of vacancies concentration. This study is the basis of quantitative preparation of NV- centers, and further lays a foundation for the application of NV- centers to the precise measurement of macroscopic physical qualities.
机译:由于它们出色的光发光特性,金刚石中的NV-(氮空位)中心使得能够对物理量的高灵敏度检测。 NV-中心的浓度是影响检测宏观物理量的敏感性的主要因素之一。本文研究并分析了电子照射剂量与NV中心浓度之间的关系。我们发现,在电子照射到金刚石后,形成524.7nm,541.1nm,578nm和648.1nm的发光中心,这对于生产Nv-中心是必需的。在金刚石上的高温(> = 800℃)和真空(> = 10(-7)PA)时,在通过氮原子结合时形成NV-中心。我们还通过电子照射的功能获得了NV-浓度的规则,其跟随玻尔兹曼分布。此外,由于空位浓度的增量,电子注射用电子注射产生的NV-产生的数量限制为100ppm的氮含量为100ppm。本研究是NV-中心的定量制备的基础,并进一步为宏观物理素质的精确测量应用NV中心的基础。

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