Fully-automated optimization of grating couplers
Applied Physics
2018-03-14 v1 Optics
Abstract
We present a gradient-based algorithm to design general 1D grating couplers without any human input from start to finish, including a choice of initial condition. We show that we can reliably design efficient couplers to have multiple functionalities in different geometries, including conventional couplers for single-polarization and single-wavelength operation, polarization-insensitive couplers, and wavelength-demultiplexing couplers. In particular, we design a fiber-to-chip blazed grating with under 0.2 dB insertion loss that requires a single etch to fabricate and no back-reflector.
Cite
@article{arxiv.1711.02228,
title = {Fully-automated optimization of grating couplers},
author = {Logan Su and Rahul Trivedi and Neil V. Sapra and Alexander Y. Piggott and Dries Vercruysse and Jelena Vučković},
journal= {arXiv preprint arXiv:1711.02228},
year = {2018}
}
Comments
8 pages, 7 figures