DocumentCode :
2067066
Title :
An implementation concept for the ASPIRE mission
Author :
Deininger, W.D. ; Purcell, W. ; Atcheson, P. ; Mills, G. ; Sandford, S.A. ; Hanel, R.P. ; McKelvey, M. ; McMurray, R.
Author_Institution :
Ball Aerosp. & Technol. Corp. (BATC), Boulder, CO, USA
fYear :
2010
fDate :
6-13 March 2010
Firstpage :
1
Lastpage :
16
Abstract :
The Astrobiology Space Infrared Explorer (ASPIRE) is a Probe-class mission concept developed as part of NASA´s Astrophysics Strategic Mission Concept studies. ASPIRE uses infrared spectroscopy to explore the identity, abundance, and distribution of molecules, particularly those of astrobiological importance throughout the Universe. ASPIRE´s observational program is focused on investigating the evolution of ices and organics in all phases of the lifecycle of carbon in the universe, from stellar birth through stellar death while also addressing the role of silicates and gas-phase materials in interstellar organic chemistry. ASPIRE achieves these goals using a Spitzer-derived, cryogenically-cooled, 1-m-class telescope in an Earth drift-away heliocentric orbit, armed with a suite of infrared spectrometers operating in the 2.5-36 micron wavelength region supported by a Kepler-based spacecraft bus. This paper summarizes the results of the ASPIRE Origins Probe Mission Concept Study while focusing on its high heritage mission implementation.
Keywords :
astrochemistry; extraterrestrial life; infrared astronomy; infrared spectroscopy; ASPIRE Origins Probe Mission Concept Study; ASPIRE mission; ASPIRE observational program; Astrobiology Space Infrared Explorer; Earth drift-away heliocentric orbit; Kepler-based spacecraft bus; NASA Astrophysics Strategic Mission Concept; infrared spectroscopy; molecular abundance; molecular distribution; molecule identification; probe-class mission concept; wavelength 2.5 micron to 36 micron; Astrochemistry; Astrophysics; Earth; Ice; Infrared spectra; Organic materials; Space exploration; Space missions; Spectroscopy; Telescopes;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Aerospace Conference, 2010 IEEE
Conference_Location :
Big Sky, MT
ISSN :
1095-323X
Print_ISBN :
978-1-4244-3887-7
Electronic_ISBN :
1095-323X
Type :
conf
DOI :
10.1109/AERO.2010.5446974
Filename :
5446974
Link To Document :
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