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Counting vacancies and nitrogen-vacancy centers in detonation nanodiamond

机译:爆轰纳米金刚石中的空位和氮空位计数

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摘要

Detonation nanodiamond particles (DND) contain highly-stable nitrogen-vacancy (N-V) centers, making it important for quantum-optical and biotechnology applications. However, due to the small particle size, the N-V concentrations are believed to be intrinsically very low, spawning efforts to understand the formation of N-V centers and vacancies, and increase their concentration. Here we show that vacancies in DND can be detected and quantified using simulation-aided electron energy loss spectroscopy. Despite the small particle size, we find that vacancies exist at concentrations of about 1 at%. Based on this experimental finding, we use ab initio calculations to predict that about one fifth of vacancies in DND form N-V centers. The ability to directly detect and quantify vacancies in DND, and predict the corresponding N-V formation probability, has a significant impact to those emerging technologies where higher concentrations and better dispersion of N-V centres are critically required.
机译:爆轰纳米金刚石粒子(DND)包含高度稳定的氮空位(N-V)中心,因此对于量子光学和生物技术应用至关重要。但是,由于粒径小,因此N-V浓度本质上很低,这促使人们努力了解N-V中心和空位的形成并增加其浓度。在这里,我们表明可以使用模拟辅助电子能量损失谱仪检测和量化DND中的空位。尽管粒径很小,但我们发现空位的浓度约为1 at%。基于这一实验发现,我们使用从头算计算来预测DND中约五分之一的空缺会形成N-V中心。直接检测和量化DND中的空位并预测相应的N-V形成概率的能力,对那些迫切需要更高浓度和N-V中心分散的新兴技术具有重大影响。

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