论文标题
低索引材料中的Anapole共振
Anapole resonances in low-index materials
论文作者
论文摘要
由于密集限制的光引起的多种线性和非线性效应,因此在当前的研究中值得光子腔。由低损耗介电材料组成的空腔设计可以实现大量的光线限制,与其他腔设计学校(例如等化学)竞争。但是,所有介电光子学(例如纳米液的共振)中的基本概念主要在高指数材料(例如WS2和SI)中进行了研究。如果没有其他措施,低索引介电纳米磁管就难以达到相似的光限制水平。在这里,我们通过将广泛研究的,孤立的介电纳米磁管纳入更宽的宿主结构中,为低索引介电腔中的更高限制提供可造的设计空间。特别是,我们专注于六角硼硝化硼(HBN),这是一种新型的介电2D材料,具有明亮的室温单个光子发射器,折射率为2.1和1.8,在平面和平面外方向上为2.1和1.8。由于HBN作为量子光源的潜力,我们通过Anapole共振的可实现的percell因子来表征我们的腔。支撑结构对空腔谐振的影响包括提高purcell因子的三倍,最大观察因子为6.2。
Photonic cavities are valued in current research owing to the multitude of linear and nonlinear effects arising from densely confined light. Cavity designs consisting of low loss dielectric materials can achieve significant light confinement, competitive with other schools of cavity design such as plasmonics. However, the basic concepts in all dielectric photonics such as anapole resonances in nanodisks have been primarily studied in high index materials such as WS2 and Si. Without additional measures, low index dielectric nanodisks struggle to achieve similar levels of light confinement. Here, we present fabricable design space for higher confinement in a low index dielectric cavity by incorporating the extensively studied, isolated dielectric nanodisk into broader host structures. In particular, we focus on hexagonal boron nitride (hBN), a novel dielectric 2D material with bright, room temperature single photon emitters and refractive indices of 2.1 and 1.8 in the inplane and out-of-plane directions. Due to hBN's potential as a quantum light source, we characterise our cavities by their achievable Purcell factors at the anapole resonance. The effects of the supporting structures on the cavity resonances include boosts to the Purcell factor by as much as three-fold to a maximum observed factor of 6.2.