A Fourier optics approach to evaluate the astrometric performance of MICADO

J. A. van den Born, W. Jellema, R. Navarro, E. Tolstoy, B. Jayawardhana, A. W. Janssen

OnderzoeksoutputAcademicpeer review

2 Citaten (Scopus)
57 Downloads (Pure)

Samenvatting

We present our investigation into the impact of wavefront errors on high accuracy astrometry using Fourier Optics. MICADO, the upcoming near-IR imaging instrument for the Extremely Large Telescope, will offer capabilities for relative astrometry with an accuracy of 50 micro arcseconds ({\mu}as). Due to the large size of the point spread function (PSF) compared to the astrometric requirement, the detailed shape and position of the PSF on the detector must be well understood. Furthermore, because the atmospheric dispersion corrector of MICADO is a moving component within an otherwise mostly static instrument, it might not be sufficient to perform a simple pre-observation calibration. Therefore, we have built a Fourier Optics framework, allowing us to evaluate the small changes in the centroid position of the PSF as a function of wavefront error. For a complete evaluation, we model both the low order surface form errors, using Zernike polynomials, and the mid- and high-spatial frequencies, using Power Spectral Density analysis. The described work will then make it possible, performing full diffractive beam propagation, to assess the expected astrometric performance of MICADO.
Originele taal-2English
TitelProceedings Volume 11450, Modeling, Systems Engineering, and Project Management for Astronomy IX;
RedacteurenGeorge Z. Angeli, Philippe Dierickx
UitgeverijSPIE
Volume11450
ISBN van elektronische versie9781510636873
DOI's
StatusPublished - 18-nov.-2020
EvenementSPIE Astronomical Telescopes + Instrumentation, 2020 - online
Duur: 13-dec.-202018-dec.-2020

Publicatie series

NaamProceedings of SPIE
UitgeverijSPIE
ISSN van geprinte versie0361-0748

Conference

ConferenceSPIE Astronomical Telescopes + Instrumentation, 2020
Periode13/12/202018/12/2020

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