Cuche Aurélien, Drezet Aurélien, Sonnefraud Yannick, Faklaris Orestis, Treussart François, Roch Jean-François, Huant Serge
Institut Néel, CNRS and Université Joseph Fourier, BP 166, 38042 Grenoble, France.
Opt Express. 2009 Oct 26;17(22):19969-80. doi: 10.1364/OE.17.019969.
We introduce a point-like scanning single-photon source that operates at room temperature and offers an exceptional photostability (no blinking, no bleaching). This is obtained by grafting in a controlled way a diamond nanocrystal (size around 20 nm) with single nitrogen-vacancy color-center occupancy at the apex of an optical probe. As an application, we image metallic nanostructures in the near-field, thereby achieving a near-field scanning single-photon microscopy working at room temperature on the long term. Our work may be of importance to various emerging fields of nanoscience where an accurate positioning of a quantum emitter is required such as for example quantum plasmonics.
我们介绍了一种在室温下工作的点状扫描单光子源,它具有出色的光稳定性(不闪烁、不漂白)。这是通过以可控方式将具有单个氮空位色心占据的金刚石纳米晶体(尺寸约为20纳米)接枝到光学探针的顶端而实现的。作为一项应用,我们对近场中的金属纳米结构进行成像,从而实现了一种能长期在室温下工作的近场扫描单光子显微镜。我们的工作可能对纳米科学的各种新兴领域具有重要意义,在这些领域中,例如量子等离子体学,需要对量子发射器进行精确的定位。