English

Photonic beam-combiner for visible interferometry with SCExAO/FIRST: laboratory characterization and design optimization

Instrumentation and Methods for Astrophysics 2024-09-06 v1

Abstract

Integrated optics are used to achieve astronomical interferometry inside robust and compact materials, improving the instrument's stability and sensitivity. In order to perform differential phase measurements at the Hα\alpha line (656.3 nm) with the 600-800 nm spectro-interferometer FIRST, a photonic integrated circuit (PIC) is being developed in collaboration with TEEM Photonics. This PIC performs the interferometric combination of the beams coming from sub-apertures selected in the telescope pupil, thus implementing the pupil remapping technique to restore the diffraction limit of the telescope. In this work, we report on the latest developments carried out within the FIRST project to produce a high performance visible PIC. The PICs are manufactured by TEEM Photonics, using their technology based on K+:Na+K_+:Na_+ ion exchange in glass. The first part of the study consists in the experimental characterization of the fundamental properties of the waveguides, in order to build an accurate model, which is the basis for the design of more complex functions. In the second part, theoretical designs and their optimization for three types of combiner architectures are presented: symmetric directional coupler, asymmetric directional couplers and ABCD cells including achromatic phase shifters.

Keywords

Cite

@article{arxiv.2409.03476,
  title  = {Photonic beam-combiner for visible interferometry with SCExAO/FIRST: laboratory characterization and design optimization},
  author = {Manon Lallement and Elsa Huby and Sylvestre Lacour and Guillermo Martin and Kevin Barjot and Guy Perrin and Daniel Rouan and Vincent Lapeyrere and Sebastien Vievard and Olivier Guyon and Julien Lozi and Vincent Deo and Takayuki Kotani and Cecil Pham and Cedric Cassagnettes and Adrien Billat and Nick Cvetojevic and Franck Marchis},
  journal= {arXiv preprint arXiv:2409.03476},
  year   = {2024}
}

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Preprint

R2 v1 2026-06-28T18:35:15.563Z