Scientific article
OA Policy
English

SPICA —A Large Cryogenic Infrared Space Telescope: Unveiling the Obscured Universe

Publication date2018-08-28
First online date2018-08-28
Abstract

Measurements in the infrared wavelength domain allow direct assessment of the physical state and energy balance of cool matter in space, enabling the detailed study of the processes that govern the formation and evolution of stars and planetary systems in galaxies over cosmic time. Previous infrared missions revealed a great deal about the obscured Universe, but were hampered by limited sensitivity.

SPICA takes the next step in infrared observational capability by combining a large 2.5-meter diameter telescope, cooled to below 8 K, with instruments employing ultra-sensitive detectors. A combination of passive cooling and mechanical coolers will be used to cool both the telescope and the instruments. With mechanical coolers the mission lifetime is not limited by the supply of cryogen. With the combination of low telescope background and instruments with state-of-the-art detectors SPICA provides a huge advance on the capabilities of previous missions.

SPICA instruments offer spectral resolving power ranging from R ~50 through 11 000 in the 17–230 μm domain and R ~28.000 spectroscopy between 12 and 18 μm. SPICA will provide efficient 30–37 μm broad band mapping, and small field spectroscopic and polarimetric imaging at 100, 200 and 350 μm. SPICA will provide infrared spectroscopy with an unprecedented sensitivity of ~5 × 10 −20 W m −2 (5σ/1 h)—over two orders of magnitude improvement over what earlier missions. This exceptional performance leap, will open entirely new domains in infrared astronomy; galaxy evolution and metal production over cosmic time, dust formation and evolution from very early epochs onwards, the formation history of planetary systems.

Citation (ISO format)
ROELFSEMA, P. R. et al. SPICA —A Large Cryogenic Infrared Space Telescope: Unveiling the Obscured Universe. In: Publications Astronomical Society of Australia, 2018, vol. 35. doi: 10.1017/pasa.2018.15
Main files (2)
Article (Published version)
accessLevelRestricted
Article (Accepted version)
accessLevelPublic
Identifiers
Journal ISSN1323-3580
26views
16downloads

Technical informations

Creation18/10/2024 12:17:37
First validation16/06/2025 09:34:01
Update16/06/2025 09:34:01
Status update16/06/2025 09:34:01
Last indexation16/06/2025 09:34:02
All rights reserved by Archive ouverte UNIGE and the University of GenevaunigeBlack