Open Access Paper
21 November 2017 A technology demonstrator for development of ultra-lightweight, large aperture, deployable telescope for space applications
Alessandro Zuccaro Marchi, Lisa Gambicorti, Francesca Simonetti, Piero Salinari, Franco Lisi, Alessandro Bursi, Massimiliano Olivier, Daniele Gallieni
Author Affiliations +
Proceedings Volume 10566, International Conference on Space Optics — ICSO 2008; 1056604 (2017) https://doi.org/10.1117/12.2308186
Event: International Conference on Space Optics 2008, 2008, Toulouse, France
Abstract
This work presents the latest results of new technological concepts for large aperture, lightweight telescopes using thin deployable active mirrors. The study is originally addressed to a spaceborne DIAL (Differential Absorption Lidar) at 935.5 nm for the measurement of water vapour profile in atmosphere, as an output of an ESA contract (whose preliminary results were presented at ICSO 2006).

The high versatility of these concepts allows to exploit the presented technology for any project willing to consider large aperture, segmented lightweight telescopes. A possible scientific application is for Ultra High Energy Cosmic Rays detection through the fluorescence traces in atmosphere and diffused Cerenkov signals observation via a Schmidt-like spaceborne LEO telescope with large aperture, wide Field of View (FOV) and low f/#.

A technology demonstrator has been manufactured and tested in order to investigate two project critical areas identified during the preliminary design: the performances of the long-stroke actuators used to implement the mirror active control and the mirror survivability to launch. In particular, this breadboard demonstrates at first that the mirror actuators are able to control with the adequate accuracy the surface shape and to recover a deployment error with their long stroke; secondly, the mirror survivability has been demonstrated using an electrostatic locking between mirror and backplane able to withstand without failure a vibration test representative of the launch environment.
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Alessandro Zuccaro Marchi, Lisa Gambicorti, Francesca Simonetti, Piero Salinari, Franco Lisi, Alessandro Bursi, Massimiliano Olivier, and Daniele Gallieni "A technology demonstrator for development of ultra-lightweight, large aperture, deployable telescope for space applications", Proc. SPIE 10566, International Conference on Space Optics — ICSO 2008, 1056604 (21 November 2017); https://doi.org/10.1117/12.2308186
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KEYWORDS
Actuators

Mirrors

Space telescopes

Telescopes

Active optics

Control systems

Glasses

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