Kizhake Veetil Vijin, Song Junyeob, Namboodiri Pradeep N, Ebadollahi Nikki, Chanana Ashish, Katzenmeyer Aaron M, Pederson Christian, Pomeroy Joshua M, Chiles Jeffrey, Shainline Jeffrey, Srinivasan Kartik, Davanco Marcelo, Pelton Matthew
Department of Physics, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore, MD 21250, USA.
National Institute of Standards and Technology, 100 Bureau Dr, Gaithersburg, MD 20899, USA.
Nanophotonics. 2024 Nov 19;14(11):1939-1948. doi: 10.1515/nanoph-2024-0485. eCollection 2025 Jun.
Color centers in silicon have recently gained considerable attention as single-photon sources and as spin qubit-photon interfaces. However, one of the major bottlenecks to the application of silicon color centers is their low overall brightness due to a relatively slow emission rate and poor light extraction from silicon. Here, we increase the photon collection efficiency from an ensemble of a particular kind of color center, known as W centers, by embedding them in circular Bragg grating cavities resonant with their zero-phonon-line emission. We observe a ≈5-fold enhancement in the photon collection efficiency (the fraction of photons extracted from the sample and coupled into a single-mode fiber), corresponding to an estimated ≈11-fold enhancement in the photon extraction efficiency (the fraction of photons collected by the first lens above the sample). For these cavities, we observe lifetime reduction by a factor of . For W centers in resonant bowtie-shaped cavities, we observed a ≈3-fold enhancement in the photon collection efficiency, corresponding to a ≈6-fold enhancement in the photon extraction efficiency, and observed a lifetime reduction factor of . The bowtie cavities thus preserve photon collection efficiency and Purcell enhancement comparable to circular cavities while providing the potential for utilizing in-plane excitation methods to develop a compact on-chip light source.
硅中的色心最近作为单光子源和自旋量子比特 - 光子接口受到了广泛关注。然而,硅色心应用的主要瓶颈之一是其整体亮度较低,这是由于发射速率相对较慢以及从硅中提取光的效率较差。在这里,我们通过将一种特定类型的色心(称为W中心)嵌入与它们的零声子线发射共振的圆形布拉格光栅腔中,提高了从该色心集合中收集光子的效率。我们观察到光子收集效率提高了约5倍(从样品中提取并耦合到单模光纤中的光子比例),这对应于估计的光子提取效率提高了约11倍(样品上方第一个透镜收集的光子比例)。对于这些腔,我们观察到寿命降低了 倍。对于共振领结形腔中的W中心,我们观察到光子收集效率提高了约3倍,对应于光子提取效率提高了约6倍,并且观察到寿命降低因子为 。因此,领结形腔在保持与圆形腔相当的光子收集效率和珀塞尔增强的同时,还提供了利用面内激发方法开发紧凑型片上光源的潜力。