DEVELOPMENT OF NEW STITCHING INTERFEROMETRY FOR THE SPICA TELESCOPE
Author(s) -
Asa Yamanaka,
Hidehiro Kaneda,
Mitsuyoshi Yamagishi,
Toru Kondo,
Takuma Kokusho,
Kotomi Tanaka,
Misaki Hanaoka,
Takao Nakagawa,
Mitsunobu Kawada,
Naoki Isobe,
Toshiaki Arai,
Takashi Onaka
Publication year - 2017
Publication title -
publications of the korean astronomical society
Language(s) - English
Resource type - Journals
eISSN - 2287-6936
pISSN - 1225-1534
DOI - 10.5303/pkas.2017.32.1.363
Subject(s) - spica , telescope , image stitching , physics , aperture (computer memory) , interferometry , optics , optical telescope , infrared telescope , acoustics
The telescope to be onboard SPICA (Space Infrared Telescope for Cosmology and Astrophysics) has an aperture diameter of 2.5 m and its imaging performance is to be diffraction-limited at a wavelength of 20 μm at the operating temperature of <8 K. Because manufacturing precise autocollimating flat mirrors (ACFs) with sizes comparable to the SPICA telescope is not technically feasible, we plan to use sub-aperture stitching interferometry through ACFs for optical testing of the telescope. We have verified the applicability of the sub-aperture stitching technique to the SPICA telescope by performing stitching experiments in a vacuum at a room temperature, using the 800-mm telescope and a 300-mm ACF. We have also developed a new method to reduce uncertainties possibly caused by cryogenic and gravitational deformations of ACFs.
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