Simulations of mode-selective photonic lanterns for efficient coupling of starlight into the single-mode regime
Abstract
In ground-based astronomy, starlight distorted by the atmosphere couples poorly into single-mode waveguides but a correction by adaptive optics, even if only partial, can boost coupling into the few-mode regime allowing the use of photonic lanterns to convert into multiple single-mode beams. Corrected wavefronts result in focal patterns that couple mostly with the circularly symmetric waveguide modes. A mode-selective photonic lantern is hence proposed to convert the multimode light into a subset of the single-mode waveguides of the standard photonic lantern, thereby reducing the required number of outputs. We ran simulations to show that only two out of the six waveguides of a 1x6 photonic lantern carry >95% of the coupled light to the outputs at if the wavefront is partially corrected and the photonic lantern is made mode-selective.
Keywords
Cite
@article{arxiv.2103.14047,
title = {Simulations of mode-selective photonic lanterns for efficient coupling of starlight into the single-mode regime},
author = {Momen Diab and Aashana Tripathi and John Davenport and Aline N. Dinkelaker and Kalaga Madhav and Martin M. Roth},
journal= {arXiv preprint arXiv:2103.14047},
year = {2021}
}
Comments
6 pages, 5 figures, accepted for publication in Applied Optics