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Three-dimensional stimulated emission depletion microscopy of nitrogen-vacancy centers in diamond using continuous-wave light.

机译:使用连续波光的金刚石中氮空位中心的三维受激发射耗尽显微镜。

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摘要

Charged nitrogen-vacancy (NV) color centers in diamond are excellent luminescence sources for far-field fluorescence nanoscopy by stimulated emission depletion (STED). Here we show that these photostable color centers can be visualized by STED using simple continuous-wave or high repetition pulsed lasers (76 MHz) at wavelengths >700 nm for STED. Furthermore, we show that NV centers can be imaged in three dimensions (3D) inside the diamond crystal and present single-photon signatures of single color centers recorded in high density samples, demonstrating a new recording scheme for STED and related far-field nanoscopy approaches. Finally, we exemplify the potential of using nanodiamonds containing NV centers as luminescence tags in STED microscopy. Our results offer new experimental avenues in nanooptics, nanotechnology, and the life sciences.
机译:钻石中带电的氮空位(NV)颜色中心是出色的发光源,可用于受激发射损耗(STED)的远场荧光纳米显微镜检查。在这里,我们显示了这些光稳定的色心可以通过STED使用简单的连续波或高重复脉冲激光(76 MHz)在STED的波长> 700 nm处可视化。此外,我们表明,NV中心可以在钻石晶体内部的三个维度(3D)上成像,并且可以显示高密度样本中记录的单色中心的单光子特征,从而证明了STED和相关远场纳米检查方法的新记录方案。最后,我们举例说明了在STED显微镜中使用含有NV中心的纳米金刚石作为发光标签的潜力。我们的结果为纳米光学,纳米技术和生命科学提供了新的实验途径。

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