论文标题

纳米座中的单氮散布中心的照相物理学,耦合到光子晶体腔

Photophysics of single nitrogen-vacancy centers in nanodiamonds coupled to photonic crystal cavities

论文作者

Schrinner, Philip P. J., Olthaus, Jan, Reiter, Doris E., Schuck, Carsten

论文摘要

钻石处的氮空位中心负电荷状态是需要单个光子发射器的量子光学实验的有前途的候选者。 NV中心的重要好处是即使在室温下,它的高亮度和光稳定性也是如此。具有光学谐振器的NV中心的发射特性是一种遵循量子技术应用要求的方法,但对非辐射衰减路径的影响尚待理解。在这里,我们报告了修改与1D光子晶体腔耦合的纳米符号中单个NV中心的内部量子效率。我们通过三种独立的测量技术评估了Purcell的增强,并在共聚焦显微镜中的激发能力上进行自相关测量。采用三级模型使我们能够提取设置效率,个人过渡速率以及系统的内部量子效率。结合我们的结果,我们发现通过percell效应的辐射衰减速率的增强导致腔耦合NV中心的内部量子效率为90%。我们的发现将有助于实现纳米级单光子源,其内部量子效率接近,以高重复速率运行。

The nitrogen vacancy center in diamond in its negative charge state is a promising candidate for quantum optic experiments that require single photon emitters. Important benefits of the NV center are its high brightness and photo-stability, even at room temperature. Engineering the emission properties of NV centers with optical resonators is a widely followed approach to meet the requirements for quantum technological applications, but the effect on non-radiative decay paths is yet to be understood. Here we report on modifying the internal quantum efficiency of a single NV center in a nanodiamond coupled to a 1D photonic crystal cavity. We assess the Purcell enhancement via three independent measurement techniques and perform autocorrelation measurements at elevated excitation powers in confocal microscopy. Employing a three-level model allows us to extract the setup efficiency, individual transition rates and thus the internal quantum efficiency of our system. Combining our results, we find that the enhancement of the radiative decay rate via the Purcell effect results in an internal quantum efficiency of 90 % for cavity-coupled NV centers. Our findings will facilitate the realization of nano-scale single photon sources with near-unity internal quantum efficiencies operating at high repetition rates.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源