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Astrophotonics: photonic integrated circuits for astronomical instrumentation

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arxiv 2302.06393 v1 pith:HMOKW6YT submitted 2023-02-13 astro-ph.IM physics.app-phphysics.optics

classification astro-ph.IMphysics.app-phphysics.optics
keywords astronomicalintegratedphotonicarrayedastrophotonicsbeamcentercircuits
verification ladder T0 review T1 audit T2 compute T3 formal
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Photonic Integrated Circuits (PIC) are best known for their important role in the telecommunication sector, e.g. high speed communication devices in data centers. However, PIC also hold the promise for innovation in sectors like life science, medicine, sensing, automotive etc. The past two decades have seen efforts of utilizing PIC to enhance the performance of instrumentation for astronomical telescopes, perhaps the most spectacular example being the integrated optics beam combiner for the interferometer GRAVITY at the ESO Very Large Telescope. This instrument has enabled observations of the supermassive black hole in the center of the Milky Way at unprecedented angular resolution, eventually leading to the Nobel Price for Physics in 2020. Several groups worldwide are actively engaged in the emerging field of astrophotonics research, amongst them the innoFSPEC Center in Potsdam, Germany. We present results for a number of applications developed at innoFSPEC, notably PIC for integrated photonic spectrographs on the basis of arrayed waveguide gratings and the PAWS demonstrator (Potsdam Arrayed Waveguide Spectrograph), PIC-based ring resonators in astronomical frequency combs for precision wavelength calibration, discrete beam combiners (DBC) for large astronomical interferometers, as well as aperiodic fiber Bragg gratings for complex astronomical filters and their possible derivatives in PIC.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Qualification pathways for Photonic Integrated Circuits in Astrophotonic Space Missions

    astro-ph.IM 2026-08 conditional novelty 5.0 of 10

    A single, tailorable seven-phase qualification template (PIC-SQT) consolidates 19 NASA/ESA/industry test steps for space-bound astrophotonic chips, plus a gap list of unstandardized tests.

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