English

2023 Astrophotonics Roadmap: pathways to realizing multi-functional integrated astrophotonic instruments

Instrumentation and Methods for Astrophysics 2023-11-02 v1 Instrumentation and Detectors

Abstract

Photonics offer numerous functionalities that can be used to realize astrophotonic instruments. The most spectacular example to date is the ESO Gravity instrument at the Very Large Telescope in Chile. Integrated astrophotonic devices stand to offer critical advantages for instrument development, including extreme miniaturization, as well as integration, superior thermal and mechanical stabilization owing to the small footprint, and high replicability offering cost savings. Numerous astrophotonic technologies have been developed to address shortcomings of conventional instruments to date, including for example the development of photonic lanterns, complex aperiodic fiber Bragg gratings, complex beam combiners to enable long baseline interferometry, and laser frequency combs for high precision spectral calibration of spectrometers. Despite these successes, the facility implementation of photonic solutions in astronomical instrumentation is currently limited because of (1) low throughputs from coupling to fibers, coupling fibers to chips, propagation and bend losses, device losses, etc, (2) difficulties with scaling to large channel count devices needed for large bandwidths and high resolutions, and (3) efficient integration of photonics with detectors, to name a few. In this roadmap, we identify 24 areas that need further development. We outline the challenges and advances needed across those areas covering design tools, simulation capabilities, fabrication processes, the need for entirely new components, integration and hybridization and the characterization of devices. To realize these advances the astrophotonics community will have to work cooperatively with industrial partners who have more advanced manufacturing capabilities. With the advances described herein, multi-functional instruments will be realized leading to novel observing capabilities for both ground and space platforms.

Keywords

Cite

@article{arxiv.2311.00615,
  title  = {2023 Astrophotonics Roadmap: pathways to realizing multi-functional integrated astrophotonic instruments},
  author = {Nemanja Jovanovic and Pradip Gatkine and Narsireddy Anugu and Rodrigo Amezcua-Correa and Ritoban Basu Thakur and Charles Beichman and Chad Bender and Jean-Philippe Berger and Azzurra Bigioli and Joss Bland-Hawthorn and Guillaume Bourdarot and Charles M. Bradford and Ronald Broeke and Julia Bryant and Kevin Bundy and Ross Cheriton and Nick Cvetojevic and Momen Diab and Scott A. Diddams and Aline N. Dinkelaker and Jeroen Duis and Stephen Eikenberry and Simon Ellis and Akira Endo and Donald F. Figer and Michael Fitzgerald and Itandehui Gris-Sanchez and Simon Gross and Ludovic Grossard and Olivier Guyon and Sebastiaan Y. Haffert and Samuel Halverson and Robert J. Harris and Jinping He and Tobias Herr and Philipp Hottinger and Elsa Huby and Michael Ireland and Rebecca Jenson-Clem and Jeffrey Jewell and Laurent Jocou and Stefan Kraus and Lucas Labadie and Sylvestre Lacour and Romain Laugier and Katarzyna Ławniczuk and Jonathan Lin and Stephanie Leifer and Sergio Leon-Sava and Guillermo Martin and Frantz Martinache and Marc-Antoine Martinod and Benjamin A. Mazin and Stefano Minardi and John D. Monnier and Reinan Moreira and Denis Mourard and Abani Shankar Nayak and Barnaby Norris and Ewelina Obrzud and Karine Perraut and François Reynaud and Steph Sallum and David Schiminovich and Christian Schwab and Eugene Serbayn and Sherif Soliman and Andreas Stoll and Liang Tang and Peter Tuthill and Kerry Vahala and Gautam Vasisht and Sylvain Veilleux and Alexander B. Walter and Edward J. Wollack and Yinzi Xin and Zongyin Yang and Stephanos Yerolatsitis and Yang Zhang and Chang-Ling Zou},
  journal= {arXiv preprint arXiv:2311.00615},
  year   = {2023}
}

Comments

191 pages, 47 figures. This is the version of the article before peer review or editing, as submitted by an author to J. Phys. Photonics. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The Version of Record is available online at https://iopscience.iop.org/article/10.1088/2515-7647/ace869/meta

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