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Spin-manipulated nanoscopy for single nitrogen-vacancy center localizations in nanodiamonds

机译:纳米金刚石中单个氮空位中心定位的自旋操纵纳米技术

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摘要

Due to their exceptional optical and magnetic properties, negatively charged nitrogen-vacancy (NV) centers in nanodiamonds (NDs) have been identified as an indispensable tool for imaging, sensing and quantum bit manipulation. The investigation of the emission behaviors of single NV centers at the nanoscale is of paramount importance and underpins their use in applications ranging from quantum computation to super-resolution imaging. Here, we report on a spin-manipulated nanoscopy method for nanoscale resolutions of the collectively blinking NV centers confined within the diffraction-limited region. Using wide-field localization microscopy combined with nanoscale spin manipulation and the assistance of a microwave source tuned to the optically detected magnetic resonance (ODMR) frequency, we discovered that two collectively blinking NV centers can be resolved. Furthermore, when the collective emitters possess the same ground state spin transition frequency, the proposed method allows the resolving of each single NV center via an external magnetic field used to split the resonant dips. In spin manipulation, the three-level blinking dynamics provide the means to resolve two NV centers separated by distances of 23 nm. The method presented here offers a new platform for studying and imaging spin-related quantum interactions at the nanoscale with super-resolution techniques.
机译:由于其出色的光学和磁性,已将纳米金刚石(NDs)中带负电荷的氮空位(NV -)中心确定为成像,传感和量子位操纵必不可少的工具。研究单个NV -中心在纳米尺度上的发射行为至关重要,并支持了它们在从量子计算到超分辨率成像的应用中的使用。在这里,我们报道了一种自旋操纵的纳米技术方法,用于纳米级分辨率的集体闪烁的NV -中心被限制在衍射极限区域内。使用宽域定位显微镜结合纳米尺度的自旋操纵和微波源的调谐到光学检测的磁共振(ODMR)频率,我们发现可以解决两个集体闪烁的NV -中心。此外,当集体发射器具有相同的基态自旋跃迁频率时,所提出的方法允许通过用于分裂谐振谷的外部磁场来解析每个单个NV -中心。在自旋操纵中,三级闪烁动力学提供了解析两个NV -中心(相距23μnm的距离)的方法。这里介绍的方法提供了一个新的平台,用于使用超分辨率技术研究和成像纳米级自旋相关的量子相互作用。

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