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Alignment procedure for the gregorian telescope of the metis coronagraph for the solar orbiter esa mission

Contributo in Atti di convegno
Data di Pubblicazione:
2018
Abstract:
Metis is a solar coronagraph mounted on-board the Solar Orbiter ESA spacecraft. Solar Orbiter is scheduled for launch in February 2020 and it is dedicated to study the solar and heliospheric physics from a privileged close and inclined orbit around the Sun. Perihelion passages with a minimum distance of 0.28 AU are foreseen. Metis features two channels to image the solar corona in two different spectral bands: in the HI Lyman ? at 121.6 nm, and in the polarized visible light band (580-640 nm). Metis is a solar coronagraph adopting an "inverted occulted" configuration. The inverted external occulter (IEO) is a circular aperture followed by a spherical mirror which back rejects the disk light. The reflected disk light exits the instrument through the IEO aperture itself, while the passing coronal light is collected by the Metis telescope. Common to both channels, the Gregorian on-axis telescope is centrally occulted and both the primary and the secondary mirror have annular shape. Classic alignment methods adopted for on-axis telescope cannot be used, since the on-axis field is not available. A novel and ad hoc alignment set-up has been developed for the telescope alignment. An auxiliary visible optical ground support equipment source has been conceived for the telescope alignment. It is made up by four collimated beams inclined and dimensioned to illuminate different sections of the annular primary mirror without being vignetted by other optical or mechanical elements of the instrument.
Tipologia CRIS:
04.01 Contributo in Atti di convegno
Keywords:
Alignment procedures; Auxiliary OGSE source; Coronagraph; Gregorian telescope
Elenco autori:
Naletto, Giampiero; Zuppella, Paola; Frassetto, Fabio; DA DEPPO, Vania
Autori di Ateneo:
DA DEPPO VANIA
FRASSETTO FABIO
ZUPPELLA PAOLA
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/377391
Pubblicato in:
PROCEEDINGS OF SPIE, THE INTERNATIONAL SOCIETY FOR OPTICAL ENGINEERING
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