Article

Penetrators for in situ subsurface investigations of Europa

Details

Citation

Gowen RA, Smith A, Fortes AD, Barber S, Brown P, Church P, Collinson G, Coates AJ, Collins G, Crawford IA, Dehant V, Chela-Flores J, Griffiths AD, Grindrod PM & Hagermann A (2011) Penetrators for in situ subsurface investigations of Europa. Advances in Space Research, 48 (4), pp. 725-742. https://doi.org/10.1016/j.asr.2010.06.026

Abstract
We present the scientific case for inclusion of penetrators into the Europan surface, and the candidate instruments which could significantly enhance the scientific return of the joint ESA/NASA Europa-Jupiter System Mission (EJSM). Moreover, a surface element would provide an exciting and inspirational mission highlight which would encourage public and political support for the mission. Whilst many of the EJSM science goals can be achieved from the proposed orbital platform, only surface elements can provide key exploration capabilities including direct chemical sampling and associated astrobiological material detection, and sensitive habitability determination. A targeted landing site of upwelled material could provide access to potential biological material originating from deep beneath the ice. Penetrators can also enable more capable geophysical investigations of Europa (and Ganymede) interior body structures, mineralogy, mechanical, magnetic, electrical and thermal properties. They would provide ground truth, not just for the orbital observations of Europa, but could also improve confidence of interpretation of observations of the other Jovian moons. Additionally, penetrators on both Europa and Ganymede, would allow valuable comparison of these worlds, and gather significant information relevant to future landed missions. The advocated low mass penetrators also offer a comparatively low cost method of achieving these important science goals. A payload of two penetrators is proposed to provide redundancy, and improve scientific return, including enhanced networked seismometer performance and diversity of sampled regions. We also describe the associated candidate instruments, penetrator system architecture, and technical challenges for such penetrators, and include their current status and future development plans.

Keywords
Penetrators; Europa; Astrobiology; EJSM

Notes
Additional Co-authors: L I Gurvits, H Hussmann, A Jaumann, A P Jones, K H Joy, O Karatekin, K Miljkovic, E Palomba, W T Pike, O Prieto-Ballesteros, F Raulin, M A Sephtona, S Sheridan, M Sims, M C Storrie-Lombardi, R Ambrosi, J Fielding, G Fraser, Y Gao, G H Jones, G Kargl, W J Karl, A Macagnano, A Mukherjee, J P Muller, A Phipps, D Pullan, L Richter, F Sohl, J Snape, J Sykes, N Wells

Journal
Advances in Space Research: Volume 48, Issue 4

StatusPublished
FundersScience & Technology Facilities Council
Publication date16/08/2011
Publication date online19/06/2010
Date accepted by journal14/06/2010
URLhttp://hdl.handle.net/1893/28828
ISSN0273-1177
eISSN1879-1948