arXiv · 2008.02552
Design of Compact and Efficient Silicon Photonic Micro Antennas with Perfectly Vertical Emission
Abstract
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 {\mu}m-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 {\lambda} = 1550 nm.
Explore related subjects
Keep this discovery
Daniele Melati, Mohsen Kamandar Dezfouli, Yuri Grinberg, Jens H. Schmid, Ross Cheriton, Siegfried Janz, Pavel Cheben, Dan-Xia Xu. 2020-08-06. Design of Compact and Efficient Silicon Photonic Micro Antennas with Perfectly Vertical Emission. https://doi.org/10.1109/jstqe.2020.3013532
Cite the original work for its findings. Save a collection to share your selection of sources.