Kumar Raman, López Morales Gabriel I, Monge Richard, Vakulenko Anton, Kiriushechkina Svetlana, Khanikaev Alexander B, Flick Johannes, Meriles Carlos A
Department of Physics, CUNY - The City College of New York, New York, NY, USA.
Department of Physics, BMS College of Engineering Bengaluru, Bengaluru, India.
Nat Nanotechnol. 2025 Aug 28. doi: 10.1038/s41565-025-02001-3.
As the ability to integrate single-photon emitters into photonic architectures improves, so does the need to characterize and understand their interaction. Here we use a scanning diamond nanocrystal to investigate the interplay between the emission of room-temperature nitrogen-vacancy (NV) centres and a proximal topological waveguide. In our experiments, NVs serve as local, spectrally broad light sources, which we exploit to characterize the waveguide bandwidth as well as the correspondence between the light injection site and the directionality of wave propagation. We find that near-field coupling to the waveguide influences the spectral shape and ellipticity of the NV photoluminescence, revealing nanostructured light fields through polarization and amplitude contrasts exceeding 50%, with a spatial resolution set by the nanoparticle size. Our results expand on the sensing modalities afforded by colour centres, highlighting novel opportunities for on-chip quantum optics devices that leverage topological photonics to optimally manipulate and read out single-photon emitters.
随着将单光子发射器集成到光子架构中的能力不断提高,对其进行表征和理解它们相互作用的需求也日益增加。在这里,我们使用扫描金刚石纳米晶体来研究室温氮空位(NV)中心的发射与近端拓扑波导之间的相互作用。在我们的实验中,NV充当局部、光谱较宽的光源,我们利用这些光源来表征波导带宽以及光注入位点与波传播方向性之间的对应关系。我们发现,与波导的近场耦合会影响NV光致发光的光谱形状和椭圆率,通过超过50%的偏振和幅度对比度揭示出纳米结构光场,其空间分辨率由纳米颗粒尺寸设定。我们的结果扩展了色心提供的传感模式,突出了利用拓扑光子学来优化操纵和读出单光子发射器的片上量子光学器件的新机遇。