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Mid‐infrared spectroscopy of refractory inclusions (CAIs) in CV and CO chondrites
Authors:A MORLOK  M KÖHLER  M M GRADY
Institution:1. Department of Mineralogy, The Natural History Museum, Cromwell Road, London SW7 5BD, UK;2. Department of Earth and Planetary Sciences, Faculty of Science, Kobe University, Kobe 657‐8501, Japan;3. CRPG‐Nancy Universite‐INSU‐CNRS, UPR2300, BP 20, 54501, Vandoeuvre‐lès‐Nancy, France, and ANDRA‐DS/CM, 1/7 rue Jean Monnet, 92298 Chatenay‐Malabry, France;4. department of Physics and Astronomy, University of Missouri, Columbia, Missouri 65211, USA;5. PSSRI, The Open University, Walton Hall, Milton Keynes MK7 6AA, UK
Abstract:Abstract— We present laboratory mid‐infrared absorption spectra (2.5 urn to 16.0 μm) of powdered calcium‐aluminum‐rich inclusions (CAIs) and matrix separated from the carbonaceous chondrites Allende (CV3.2), Vigarano (CV3.3), and Ornans (C03.3). Two groups of spectra with different features were found for the CAI: in the first group spectra are dominated by spinel, pyroxene, and sodalite ± nepheline, where main features occur at 9.3 μm, 10.3 μm, and 11.3 μm. In the second group, characteristic minerals are spinel and melilite with typical band maxima at 11.0 μm and 12.3 μm, and a broad feature between 14.0 μn and 15.0 μn. The position of the broad spinel feature probably depends on its iron content. Comparison of band positions in spectra from the CAI components to observed circumstellar emission spectra indicates the potential occurrence of CAI‐like material. Pyroxene‐ and spinel‐rich features could occur in spectra of dust around the Herbig Ae star HD104237, the T Tauri star Hen3‐600 and the post‐AGB star R Sge. Melilite‐ and spinel‐rich components possibly appear in the spectrum of HD 104237, Hen3‐600, 04187_1927, R Sge, and the planetary nebula Hb 12. There is also indication for a spinel component in dust from the Herbig Ae/Be star HD 179218. The spectra of the AGB stars R Cas and θ Aps show no features of CAl‐type spinel.
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