The Atmospheric Remote-sensing Infrared Exoplanet Large-survey (Ariel), selected as ESA's fourth medium-class mission in the Cosmic Vision program, is set to launch in 2029. The objective of the study is to conduct spectroscopic observations of approximately one thousand exoplanetary atmospheres for better understanding the planetary system formation and evolution and identifying a clear link between the characteristics of an exoplanet and those of its parent star. The realization of the Ariel's telescope is a challenging task that is still ongoing. It is an off-axis Cassegrain telescope (M1 parabola, M2 hyperbola) followed by a re-collimating off-axis p arabola (M3) a nd a p lane fold mirror (M4). It is made of Al 6061 and designed to operate at visible and infrared wavelengths. The mirrors of the telescope will be coated with protected silver, qualified to operate at cryogenic temperatures. The qualification of the coating was performed according to the ECSS Q-ST-70-17C standard, on a set of samples that have been stored in ISO 6 cleanroom conditions and are subjected to periodic inspection and reflectance measurements to detect any potential performance degradation. The samples consist of a set of Aluminum alloy Al 6061-T651 disks coated with protected silver. This paper presents the results of the morphological characterization of the samples based on Atomic Force Microscopy (AFM) and the reflectivity measurement in the infrared by Fourier Transform Infrared (FTIR) spectroscopy.
Protected silver coating for Ariel telescope mirrors: study of ageing effects / Ypi, Ines; Zuppella, Paola; Chioetto, Paolo; Araiza-Durán, Jose A.; Barozzi, Umberto; Barubiani, Lorenzo; Bishop, Georgia; Bonfa', Pasquale; Brienza, Daniele; Brucalassi, Anna; Burresi, Matteo; Caldwell, Andrew; D'Anca, Fabio; Davidson, Alexander; Desjonquères, Lucile; Di Giampietro, Marco; Drummond, Rachel; Eccleston, Paul; Ferro, Paolo; Ferruzzi, Debora; Fossati, Enrico; Grisoni, Gabriele; Guerriero, Elisa; Ianni, Lucia; Madii, Lorenzo; Malaguti, Giuseppe; Micela, Giuseppina; Miceli, Federico; Pace, Emanuele; Pascale, Enzo; Piazzolla, Raffaele; Picchi, Paolo; Pompei, Carlo; Postiglione, Giovanni; Preti, Giampaolo; Salatti, Mario; Scippa, Antonio; Simpson, Caroline; Tinetti, Giovanna; Tommasi, Elisabetta; Tommasi, Leonardo; Tozzi, Andrea; Vernani, Dervis. - ELETTRONICO. - 13100:(2024), pp. 1-8. ( Advances in Optical and Mechanical Technologies for Telescopes and Instrumentation VI 2024 jpn 2024) [10.1117/12.3017768].
Protected silver coating for Ariel telescope mirrors: study of ageing effects
Burresi, Matteo;Miceli, Federico;Pace, Emanuele;Picchi, Paolo;Preti, Giampaolo;Scippa, Antonio;Tommasi, Leonardo;Tozzi, Andrea;
2024
Abstract
The Atmospheric Remote-sensing Infrared Exoplanet Large-survey (Ariel), selected as ESA's fourth medium-class mission in the Cosmic Vision program, is set to launch in 2029. The objective of the study is to conduct spectroscopic observations of approximately one thousand exoplanetary atmospheres for better understanding the planetary system formation and evolution and identifying a clear link between the characteristics of an exoplanet and those of its parent star. The realization of the Ariel's telescope is a challenging task that is still ongoing. It is an off-axis Cassegrain telescope (M1 parabola, M2 hyperbola) followed by a re-collimating off-axis p arabola (M3) a nd a p lane fold mirror (M4). It is made of Al 6061 and designed to operate at visible and infrared wavelengths. The mirrors of the telescope will be coated with protected silver, qualified to operate at cryogenic temperatures. The qualification of the coating was performed according to the ECSS Q-ST-70-17C standard, on a set of samples that have been stored in ISO 6 cleanroom conditions and are subjected to periodic inspection and reflectance measurements to detect any potential performance degradation. The samples consist of a set of Aluminum alloy Al 6061-T651 disks coated with protected silver. This paper presents the results of the morphological characterization of the samples based on Atomic Force Microscopy (AFM) and the reflectivity measurement in the infrared by Fourier Transform Infrared (FTIR) spectroscopy.| File | Dimensione | Formato | |
|---|---|---|---|
|
1310067.pdf
Accesso chiuso
Tipologia:
Pdf editoriale (Version of record)
Licenza:
Tutti i diritti riservati
Dimensione
5.07 MB
Formato
Adobe PDF
|
5.07 MB | Adobe PDF | Richiedi una copia |
I documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.



