Paper
16 June 2006 Zero distortion three mirror telescope designed for the Dark Universe Explorer (DUNE) space mission
Robert Grange, Bruno Milliard, Sébastien Vivès, Frédéric Safa, Alexandre Réfrégier, Olivier Boulade, Emmanuel Bertin
Author Affiliations +
Abstract
A feasibility study is presently led by CNES for the Dark UNiverse Explorer (DUNE), a space mission designed to provide unprecedented constraints on dark matter and dark energy using weak gravitational lensing measurements over a very large region of the sky (20 000 square degrees). To achieve this scientific goal, the instrument requires a stable 0.23 arc second FWHM PSF with very low ellipticity (6%) over a field of view of 0.55 square degree. To perform the survey we adopted the drift scan mode which brings many advantages in this type of mission but adds the unusual requirement of a zero distortion optical design. We will present the optical performances of a 1.2 meters Korsch three mirror telescope concept (called NODI for NO DIstortion) where the third mirror works with an atypical large magnification and a slightly curved focal surface to obtain zero distortion over an annular 1.7 degrees field of view. A mosaic of 64 CCD detectors of 8 Mega pixels each is shown to pave the curved focal surface without significant degradation of the distortion.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Robert Grange, Bruno Milliard, Sébastien Vivès, Frédéric Safa, Alexandre Réfrégier, Olivier Boulade, and Emmanuel Bertin "Zero distortion three mirror telescope designed for the Dark Universe Explorer (DUNE) space mission", Proc. SPIE 6265, Space Telescopes and Instrumentation I: Optical, Infrared, and Millimeter, 626549 (16 June 2006); https://doi.org/10.1117/12.671633
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Cited by 3 scholarly publications.
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KEYWORDS
Distortion

Mirrors

Space telescopes

Charge-coupled devices

Telescopes

Optical design

Space operations

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