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Localization of Narrowband Single Photon Emitters in Nanodiamonds

机译:纳米金刚石中窄带单光子发射体的定位

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Diamond nanocrystals that host room temperature narrowband single photon emitters are highly sought after for applications in nanophotonics and bioimaging. However, current understanding of the origin of these emitters is extremely limited. In this work, we demonstrate that the narrowband emitters are point defects localized at extended morphological defects in individual nanodiamonds. In particular, we show that nanocrystals with defects such as twin boundaries and secondary nucleation sites exhibit narrowband emission that is absent from pristine individual nanocrystals grown under the same conditions. Critically, we prove that the narrowband emission lines vanish when extended defects are removed deterministically using highly localized electron beam induced etching. Our results enhance the current understanding of single photon emitters in diamond and are directly relevant to fabrication of novel quantum optics devices and sensors.
机译:承载室温窄带单光子发射器的金刚石纳米晶体在纳米光子学和生物成像中的应用受到了广泛的追捧。但是,目前对这些辐射源的了解非常有限。在这项工作中,我们证明窄带发射器是点缺陷,位于单个纳米金刚石的扩展形态缺陷中。特别地,我们表明具有缺陷如双晶界和次级成核位点的纳米晶体表现出窄带发射,而在相同条件下生长的原始单个纳米晶体则没有这种窄带发射。至关重要的是,我们证明当使用高度局部化的电子束诱导蚀刻确定性地去除延伸的缺陷时,窄带发射线将消失。我们的结果增强了对金刚石中单光子发射器的当前了解,并且与新型量子光学器件和传感器的制造直接相关。

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