论文标题
定向单光子从确定性量子点波导结构发射
Directional single-photon emission from deterministic quantum dot waveguide structures
论文作者
论文摘要
手性光 - 物质相互作用会导致波导中两级光发射器的方向发射。近年来,这种有趣的物理效应引起了很大的关注,尤其是在芯片量子系统方面。在这种情况下,我们的工作着重于定制单个半导体量子点波导(QD-WG)系统,以散发具有高方向性的单个光子。我们使用通过阴极发光映射来启用的低温内电子梁光刻来选择合适的QD,并将其确定性地集成到由数值计算确定的特定手性点上的线性波导结构中。我们在共聚焦微孔设置中观察到来自制造的QD-WG结构的激子和Biexcitonic发射,从而以综合QDS发出的圆极化光子的方向发射来实现光学表征。我们的结果表明,在自相关实验中定向QD发射和抗抗激素的54%的高度各向异性,确认了制造的QD-WG系统,这是在集成量子电路中使用此效果的先决条件。
Chiral light-matter interaction can lead to directional emission of two-level light emitters in waveguides. This interesting physics effect has raised considerable attention in recent years especially in terms of on-chip quantum systems. In this context, our work focuses on tailoring single semiconductor quantum dot-waveguide (QD-WG) systems to emit single photons with high directionality. We use low-temperature in-situ electron-beam lithography enabled by cathodoluminescence mapping to select suitable QDs and to integrate them deterministically into linear waveguide structures at specific chiral points determined by numerical calculations. We observe excitonic and biexcitonic emission from the fabricated QD-WG structure in a confocal microPL setup enabling the optical characterization in terms of directional emission of circularly polarized photons emitted by integrated QDs. Our results show a high degree of anisotropy on the level of 54% for directional QD emission and antibunching in autocorrelation experiment confirming the fabricated QD-WG system, which is a prerequisite for using this effect in advanced applications in integrated quantum circuits.