Yu X, Weeber J-C, Markey L, Arocas J, Bouhelier A, Leray A, Colas des Francs G
Laboratoire Interdisciplinaire Carnot de Bourgogne (ICB), CNRS UMR 6303, Université de Bourgogne, BP 47870, F-21078 Dijon, France.
Nanotechnology. 2024 Apr 9;35(26). doi: 10.1088/1361-6528/ad3742.
Integrated quantum photonic circuits require the efficient coupling of photon sources to photonic waveguides. Hybrid plasmonic/photonic platforms are a promising approach, taking advantage of both plasmon modal confinement for efficient coupling to a nearby emitter and photonic circuitry for optical data transfer and processing. In this work, we established directional quantum dot (QD) emission coupling to a planar TiOwaveguide assisted by a Yagi-Uda antenna. Antenna on waveguide is first designed by scaling radio frequency dimensions to nano-optics, taking into account the hybrid plasmonic/photonic platform. Design is then optimized by full numerical simulations. We fabricate the antenna on a TiOplanar waveguide and deposit a few QDs close to the Yagi-Uda antenna. The optical characterization shows clear directional coupling originating from antenna effect. We estimate the coupling efficiency and directivity of the light emitted into the waveguide.
集成量子光子电路需要将光子源有效地耦合到光子波导。混合等离子体/光子平台是一种很有前景的方法,它利用了等离子体模式限制来实现与附近发射器的高效耦合,以及利用光子电路进行光学数据传输和处理。在这项工作中,我们在八木 - 宇田天线的辅助下,实现了定向量子点(QD)发射与平面TiO波导的耦合。首先通过将射频尺寸缩放到纳米光学来设计波导上的天线,同时考虑混合等离子体/光子平台。然后通过全数值模拟对设计进行优化。我们在TiO平面波导上制作天线,并在靠近八木 - 宇田天线的位置沉积一些量子点。光学表征显示出源于天线效应的明显定向耦合。我们估计了发射到波导中的光的耦合效率和方向性。