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Effect of radiation damage on the quantum optical properties of nitrogen vacancies in diamond

机译:辐射损伤对金刚石氮空位量子光学性质的影响

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Single crystal diamond ( < 5 ppm nitrogen) containing native NV centers with coherence time of 150 ps was irradiated with 2 MeV alpha particles, with doses ranging from 10(12) ion/cm(2) to 10(15) ion/cm(2). The effect of ion damage on the coherence time of NV centers was studied using optically detected magnetic resonance and supplemented by fluorescence and Raman microscopy. A cross-sectional geometry was employed so that the NV coherence time could be measured as a function of increasing defect concentration along the ion track. Surprisingly, although the ODMR contrast was found to decrease with increasing ion induced vacancy concentration, the measured decoherence time remained undiminished at 150us despite the estimated vacancy concentration reaching a value of 40 ppm at the end of range. These results suggest that ion induced damage in the form of an increase in vacancy concentration does not necessarily result in a significant increase in the density of the background spin bath.
机译:用2mEVα颗粒照射含有150ps的一致时间的天然NV中心的单晶金刚石(<5ppm氮气),用10(12)离子/ cm(2)至10(15)离子/ cm( 2)。 使用光学检测磁共振研究了离子损伤对NV中心的相干时间的影响,并通过荧光和拉曼显微镜进行补充。 采用横截面几何形状,使得可以测量NV相干时间作为沿离子轨道增加缺陷浓度的函数来测量。 令人惊讶的是,虽然发现ODMR对比度随着离子诱导的空位浓度的增加而降低,但是,尽管估计空位浓度在范围内达到40ppm的值为40ppm,但在150us仍然存在下降的脱机时间。 这些结果表明,空位浓度增加的形式的离子诱导损伤不一定导致背景旋转浴的密度显着增加。

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