Fabrication-constrained nanophotonic inverse design
Abstract
A major difficulty in applying computational design methods to nanophotonic devices is ensuring that the resulting designs are fabricable. Here, we describe a general inverse design algorithm for nanophotonic devices that directly incorporates fabrication constraints. To demonstrate the capabilities of our method, we designed a spatial-mode demultiplexer, wavelength demultiplexer, and directional coupler. We also designed and experimentally demonstrated a compact, broadband power splitter on a silicon photonics platform. The splitter has a footprint of only , and is well within the design rules of a typical silicon photonics process, with a minimum radius of curvature of . Averaged over the designed wavelength range of , our splitter has a measured insertion loss of and power uniformity of .
Cite
@article{arxiv.1612.03222,
title = {Fabrication-constrained nanophotonic inverse design},
author = {Alexander Y. Piggott and Jan Petykiewicz and Logan Su and Jelena Vučković},
journal= {arXiv preprint arXiv:1612.03222},
year = {2017}
}
Comments
13 pages, 8 figures