Hydroxylated Mg-rich Amorphous Silicates: A New Component of the 3.2 μ m Absorption Band of Comet 67P/Churyumov–Gerasimenko

Mennella, V. and Ciarniello, M. and Raponi, A. and Capaccioni, F. and Filacchione, G. and Suhasaria, T. and Popa, C. and Kappel, D. and Moroz, L. and Vinogradoff, V. and Pommerol, A. and Rousseau, B. and Istiqomah, I. and Bockelee-Morvan, D. and Carlson, R. W. and Pilorget, C. (2020) Hydroxylated Mg-rich Amorphous Silicates: A New Component of the 3.2 μ m Absorption Band of Comet 67P/Churyumov–Gerasimenko. The Astrophysical Journal, 897 (2). L37. ISSN 2041-8213

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Abstract

The VIRTIS imaging spectrometer on board Rosetta has shown that the nucleus surface of comet 67P/Churyumov–Gerasimenko (67P/CG) is characterized by a broad absorption band at around 3.2 μm. The feature is ubiquitous across the surface and its attribution to (a) specific material(s) has been challenging. In the present Letter, we report an experimental investigation showing that the interaction of hydrogen atoms with Mg-rich amorphous silicates determines the formation of hydroxyl groups. The resulting IR spectrum exhibits a broad feature around 3.2 μm similar to that of comet 67P/CG. Hapke's radiative transfer model was employed to estimate an upper limit contribution of 65% of hydroxylated silicates to the observed cometary band intensity. The presence of a hydroxylated fraction in silicates on the cometary surface would represent an evolutionary link between primitive objects of the solar system and dust in the interstellar medium (ISM), where silicate grains can be hydroxylated after having interacted with hydrogen atoms. This link is consistent with the detection of the aliphatic organics in 67P/CG that also originate in the ISM.

Item Type: Article
Subjects: STM One > Physics and Astronomy
Depositing User: Unnamed user with email support@stmone.org
Date Deposited: 23 May 2023 06:03
Last Modified: 23 May 2024 06:53
URI: http://publications.openuniversitystm.com/id/eprint/1153

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