Laboratoire de Physique des Solides, Université Paris-Sud, CNRS-UMR 8502, Orsay 91405, France.
Nanotechnology. 2012 May 4;23(17):175702. doi: 10.1088/0957-4484/23/17/175702. Epub 2012 Apr 5.
Here we report the spectrally and spatially resolved cathodoluminescence of diamond nanoparticles using focused fast electron beams in a transmission electron microscope. We demonstrate the possibility of quickly detecting various individual colour centres of different kinds on wide areas (several micrometres square) contained in nanoparticles separated by subwavelength distances. Among them, nanoparticles containing one or more neutral nitrogen-vacancy (NV(0)) intensity maxima have been seen, attributable to individual emitters. Thanks to a spatial resolution which is solely limited by charge carrier diffusion in the case of a fast electron (80 keV) setup, the spectra of two individual NV(0) emitters separated by 80 nm inside a nanoparticle have been spatially discerned. A shift of the zero phonon line (ZPL) between the two emitters, which we attribute to internal stress, is shown to arise even within the same nanoparticle. Detailed emission spectra (ZPL, phonon lines and Huang-Rhys factor, directly linked to the relaxation energy of the colour centre) in 51 individual NV(0) centres have been measured in 39 particles. The ZPL and Huang-Rhys factor are found to be measurably dispersed, while the phonon energies keep constant.
在这里,我们利用透射电子显微镜中的聚焦快电子束,报告了金刚石纳米粒子的光谱和空间分辨的阴极射线发光。我们证明了在纳米粒子中,通过亚波长距离分离的大区域(几微米见方)上,快速检测各种不同类型的单个色心的可能性。其中,已经观察到含有一个或多个中性氮空位(NV(0))强度最大值的纳米粒子,这归因于单个发射器。由于在快速电子(80 keV)设置下,空间分辨率仅受载流子扩散的限制,因此已经在纳米粒子内分离出 80nm 的两个单独 NV(0)发射器的光谱。我们认为,即使在同一个纳米粒子内,两个发射器之间的零声子线(ZPL)的偏移(我们归因于内部应力)也会出现。在 39 个粒子中的 51 个单独的 NV(0)中心中,已经测量了详细的发射光谱(ZPL、声子线和黄-瑞利因子,与色心的弛豫能量直接相关)。发现 ZPL 和黄-瑞利因子可测地分散,而声子能量保持不变。