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Characterizing organic particle impacts on inert metal surfaces: Foundations for capturing organic molecules during hypervelocity transits of Enceladus plumes

New, J, Mathies, R. A., Price, M. C., Cole, M. J., Golozar, M., Spathis, V., Burchell, M.J., Butterworth, A. L. (2020) Characterizing organic particle impacts on inert metal surfaces: Foundations for capturing organic molecules during hypervelocity transits of Enceladus plumes. Meteoritics & Planetary Science, 55 (3). pp. 465-479. ISSN 1086-9379. (doi:10.1111/maps.13448) (KAR id:81142)

Abstract

The presence and accessibility of a sub‐ice‐surface saline ocean at Enceladus, together with geothermal activity and a rocky core, make it a compelling location to conduct further, in‐depth, astrobiological investigations to probe for organic molecules indicative of extraterrestrial life. Cryovolcanic plumes in the south polar region of Enceladus enable the use of remote in situ sampling and analysis techniques. However, efficient plume sampling and the transportation of captured organic materials to an organic analyzer present unique challenges for an Enceladus mission. A systematic study, accelerating organic ice‐particle simulants into soft inert metal targets at velocities ranging 0.5–3.0 km s−1, was carried out using a light gas gun to explore the efficacy of a plume capture instrument. Capture efficiency varied for different metal targets as a function of impact velocity and particle size. Importantly, organic chemical compounds remained chemically intact in particles captured at speeds up to ~2 km s−1. Calibration plots relating the velocity, crater, and particle diameter were established to facilitate future ice‐particle impact experiments where the size of individual ice particles is unknown.

Item Type: Article
DOI/Identification number: 10.1111/maps.13448
Subjects: Q Science > QB Astronomy
Divisions: Divisions > Division of Natural Sciences > Physics and Astronomy
Depositing User: Mark Burchell
Date Deposited: 07 May 2020 10:06 UTC
Last Modified: 09 Dec 2022 05:06 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/81142 (The current URI for this page, for reference purposes)

University of Kent Author Information

New, J.

Creator's ORCID: https://orcid.org/0000-0001-7473-8874
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Price, M. C..

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Cole, M. J..

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Spathis, V..

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Burchell, M.J..

Creator's ORCID: https://orcid.org/0000-0002-2680-8943
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