论文标题
紧凑,有效的硅光子微型天线的设计,具有完美的垂直发射
Design of Compact and Efficient Silicon Photonic Micro Antennas with Perfectly Vertical Emission
论文作者
论文摘要
紧凑而有效的光天线是许多应用的基本组件,包括高密度纤维芯片耦合和光学阶段阵列。在这里,我们介绍了在300 nm硅启动平台中具有完美垂直发射的基于光栅的微疗法的设计。我们利用一种结合伴随优化和机器学习维度降低的方法论,以有效地映射天线的多参数设计空间,分析大量相关的性能指标,进行所需的多目标优化,并发现高性能设计。使用一个步骤的光栅,我们使用3.6μm长的天线实现近92%的垂直向上衍射效率。当与超高的数值光纤纤维结合时,天线的耦合效率超过81%(-0.9 dB),1 dB的带宽效率几乎为158 nm。完美垂直天线产生的反射小于以λ= 1550 nm为中心的200 nm带宽。
Compact and efficient optical antennas are fundamental components for many applications, including high-density fiber-chip coupling and optical phased arrays. Here we present the design of grating-based micro-antennas with perfectly vertical emission in the 300-nm silicon-on-insulator platform. We leverage a methodology combining adjoint optimization and machine learning dimensionality reduction to efficiently map the multiparameter design space of the antennas, analyse a large number of relevant performance metrics, carry out the required multi-objective optimization, and discover high performance designs. Using a one-step apodized grating we achieve a vertical upward diffraction efficiency of almost 92% with a 3.6 μm-long antenna. When coupled with an ultra-high numerical aperture fiber, the antenna exhibits a coupling efficiency of more than 81% (-0.9 dB) and a 1-dB bandwidth of almost 158 nm. The reflection generated by the perfectly vertical antenna is smaller than -20 dB on a 200-nm bandwidth centered at λ = 1550 nm.