METIS high-contrast imaging: from final design to manufacturing and testing
Abstract
The Mid-infrared ELT Imager and Spectrograph (METIS) is one of the first-generation scientific instruments for the ELT, built under the supervision of ESO by a consortium of research institutes across and beyond Europe. Designed to cover the 3 to 13 m wavelength range, METIS had its final design reviewed in Fall 2022, and has then entered in earnest its manufacture, assembly, integration, and test (MAIT) phase. Here, we present the final design of the METIS high-contrast imaging (HCI) modes. We detail the implementation of the two main coronagraphic solutions selected for METIS, namely the vortex coronagraph and the apodizing phase plate, including their combination with the high-resolution integral field spectrograph of METIS, and briefly describe their respective backup plans (Lyot coronagraph and shaped pupil plate). We then describe the status of the MAIT phase for HCI modes, including a review of the final design of individual components such as the vortex phase masks, the grayscale ring apodizer, and the apodizing phase plates, as well as a description of their on-going performance tests and of our plans for system-level integration and tests. Using end-to-end simulations, we predict the performance that will be reached on sky by the METIS HCI modes in presence of various environmental and instrumental disturbances, including non-common path aberrations and water vapor seeing, and discuss our strategy to mitigate these various effects. We finally illustrate with mock observations and data processing that METIS should be capable of directly imaging temperate rocky planets around the nearest stars.
Cite
@article{arxiv.2407.10588,
title = {METIS high-contrast imaging: from final design to manufacturing and testing},
author = {Olivier Absil and Matthew Kenworthy and Christian Delacroix and Gilles Orban de Xivry and Lorenzo König and Prashant Pathak and David Doelman and Emiel Por and Frans Snik and Joost van den Born and Faustine Cantalloube and Alexis Carlotti and Benjamin Courtney-Barrer and Pontus Forsberg and Mikael Karlsson and Thomas Bertram and Roy van Boekel and Dennis Dolkens and Markus Feldt and Adrian M. Glauser and Eric Pantin and Sascha P. Quanz and Felix Bettonvil and Bernhard Brandl},
journal= {arXiv preprint arXiv:2407.10588},
year = {2024}
}
Comments
16 pages, paper presented at SPIE Astronomical Telescopes + Instrumentation 2024