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Emission and nonradiative decay of nanodiamond NV centers in a low refractive index environment

机译:低折射率环境下纳米金刚石NV中心的发射和非辐射衰减

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摘要

The nitrogen vacancy (NV) center is the most widely studied single optical defect in diamond with great potential for applications in quantum technologies. Development of practical single-photon devices requires an understanding of the emission under a range of conditions and environments. In this work, we study the properties of a single NV center in nanodiamonds embedded in an air-like silica aerogel environment which provides a new domain for probing the emission behavior of NV centers in nanoscale environments. In this arrangement, the emission rate is governed primarily by the diamond crystal lattice with negligible contribution from the surrounding environment. This is in contrast to the conventional approach of studying nanodiamonds on a glass coverslip. We observe an increase in the mean lifetime due to the absence of a dielectric interface near the emitting dipoles and a distribution arising from the irregularities in the nanodiamond geometry. Our approach results in the estimation of the mean quantum efficiency (~0.7) of the nanodiamond NV emitters.
机译:氮空位(NV)中心是金刚石中研究最广泛的单个光学缺陷,具有在量子技术中应用的巨大潜力。实际单光子设备的开发需要了解各种条件和环境下的发射。在这项工作中,我们研究了嵌入空气状二氧化硅气凝胶环境中的纳米金刚石中单个NV中心的特性,这为探测NV中心在纳米级环境中的发射行为提供了一个新领域。在这种布置中,发射率主要由金刚石晶格控制,而周围环境的贡献可忽略不计。这与研究在玻璃盖玻片上的纳米金刚石的常规方法相反。我们观察到平均寿命的增加是由于在发射偶极子附近不存在介电界面以及纳米金刚石几何形状的不规则性引起的分布。我们的方法可以估算出纳米金刚石NV发射体的平均量子效率(〜0.7)。

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