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The H2O and O2 exospheres of Jupiter's moon Ganymede

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2016

Publication Year

2020-11-24T14:02:04Z

Acceptance in OA@INAF

The H2O and O2 exospheres of Jupiter's moon Ganymede

Title

Plainaki, C.; MILILLO, Anna; MASSETTI, Stefano; MURA, Alessandro; Jia, X.; et

al.

Authors

http://hdl.handle.net/20.500.12386/28505

Handle

MEMORIE DELLA SOCIETA ASTRONOMICA ITALIANA

Journal

87

Number

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Mem. S.A.It. Vol. 87, 194 c

° SAIt 2016 Memoriedella

The H

2

O and O

2

exospheres of Jupiter's moon

Ganymede

C. Plainaki1, A. Milillo1, S. Massetti1, A. Mura1, X. Jia2, S. Orsini1, V. Mangano1, E. De Angelis1, F. Lazzarotto1, and R. Rispoli1

1 INAF-IAPS, via Fosso del Cavaliere 100, 00133 Roma, Italy

2 Department of Atmospheric, Oceanic, and Space Sciences, University of Michigan, Ann

Arbor, MI 48109-2143, USA

Abstract.

A simulation of the H2O and O2exospheres of Jupiter’ moon Ganymede, through the application of a 3D Monte Carlo modeling technique, is presented. Our model takes into consideration the combined effect on the exosphere generation of the main surface release processes (i.e. sputter-ing, sublimation and radiolysis) and the surface precipitation of the energetic ions of Jupiter’s magnetosphere constrained strongly by Ganymede’s intrinsic magnetic field. In order to model the magnetospheric ion precipitation to Ganymede’s surface, we used as an input the electric and magnetic fields from the global MHD model of Ganymede’s magnetosphere (Jia et al., 2009). The exospheric model described in this paper is based on EGEON, a single-particle Monte Carlo model already applied for a Galilean satellite (Plainaki et al. 2010, 2012, 2013). We find that at small altitudes above the moon.s subsolar point the main contribution to the neutral environ-ment comes from sublimated H2O whereas the spatial distribution of the directly sputtered-H2O molecules exhibits a close correspondence with the plasma precipitation region and extends at high altitudes, being, therefore, well differentiated from the sublimated water. Moreover, we find that the O2exosphere comprises two different regions: the first one is an homogeneous, relatively dense, thermal-O2region extending to some 100s of km above the surface, whereas the second one is less homogeneous and consists of more energetic O2molecules sputtered directly from the surface after water-dissociation by ions has taken place; the spatial distribution of the energetic surface-released O2molecules depends both on the impacting plasma properties and the moon’s surface temperature distribution.

References

Jia, X., Walker, R. J., Kivelson, M. G., Khurana, K. K., & Linker, J. A. 2009, J. Geophys. Res. (Space Physics), 114, A09209

Plainaki, C., Milillo, A., Mura, A., el al. 2010, Icarus, 210, 385 Plainaki, C., Milillo, A., Mura, A., et al. 2012, Icarus, 218, 956

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Plainaki et al.: The H2O and O2exospheres of Jupiter’s moon Ganymede 195

Plainaki, C., Milillo, A., Mura, A., et al. 2013, Planet. Space Sci., 88, 42 Plainaki, C., Milillo, A., Massetti, S., et al. 2015, Icarus, 245, 306

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