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  3. Large-scale dust jets in the coma of 67P/Churyumov-Gerasimenko as seen by the OSIRIS instrument onboard Rosetta
 

Large-scale dust jets in the coma of 67P/Churyumov-Gerasimenko as seen by the OSIRIS instrument onboard Rosetta

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BORIS DOI
10.7892/boris.81676
Publisher DOI
10.1051/0004-6361/201526103
Description
Context. During the most recent perihelion passage in 2009 of comet 67P/Churyumov-Gerasimenko (67P), ground-based observations showed an anisotropic dust coma where jet-like features were detected at similar to 1.3 AU from the Sun. The current perihelion passage is exceptional as the Rosetta spacecraft is monitoring the nucleus activity since March 2014, when a clear dust coma was already surrounding the nucleus at 4.3 AU from the Sun. Subsequently, the OSIRIS camera also witnessed an outburst in activity between April 27 and 30, and since mid-July, the dust coma at rh similar to 3.7-3.6 AU preperihelion is clearly non-isotropic, pointing to the existence of dust jet-like features. Aims. We aim to ascertain on the nucleus surface the origin of the dust jet-like features detected as early as in mid-July 2014. This will help to establish how the localized comet nucleus activity compares with that seen in previous apparitions and will also help following its evolution as the comet approaches its perihelion, at which phase most of the jets were detected from ground-based observations. Determining these areas also allows locating them in regions on the nucleus with spectroscopic or geomorphological distinct characteristics. Methods. Three series of dust images of comet 67P obtained with the Wide Angle Camera (WAC) of the OSIRIS instrument onboard the Rosetta spacecraft were processed with different enhancement techniques. This was made to clearly show the existence of jet-like features in the dust coma, whose appearance toward the observer changed as a result of the rotation of the comet nucleus and of the changing observing geometry from the spacecraft. The position angles of these features in the coma together with information on the observing geometry, nucleus shape, and rotation, allowed us to determine the most likely locations on the nucleus surface where the jets originate from. Results. Geometrical tracing of jet sources indicates that the activity of the nucleus of 67P gave rise during July and August 2014 to large-scale jet-like features from the Hapi, Hathor, Anuket, and Aten regions, confirming that active regions may be present on the nucleus localized at 60. northern latitude as deduced from previous comet apparitions. There are also hints that large-scale jets observed from the ground are possibly composed, at their place of origin on the nucleus surface, of numerous small-scale features.
Date of Publication
2015-11
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Language(s)
en
Contributor(s)
Lara, L. M.
Lowry, S.
Vincent, J. B.
Gutierrez, P. J.
Rozek, A.
La Forgia, F.
Oklay, N.
Sierks, H.
Barbieri, C.
Lamy, P. L.
Rodrigo, R.
Koschny, D.
Rickman, H.
Keller, H. U.
Agarwal, J.
Auger, A. T.
A'Hearn, M. F.
Barucci, M. A.
Bertaux, J. L.
Bertini, I.
Besse, S.
Bodewits, D.
Cremonese, G.
Davidsson, B.
Da Deppo, V.
Debei, S.
De Cecco, M.
Elmaarry, Mohamed Ramy
Physikalisches Institut, Weltraumforschung und Planetologie (WP)
Ferri, F.
Fornasier, S.
Fulle, M.
Groussin, O.
Gutierrez-Marques, P.
Guettler, C.
Hviid, S. F.
Ip, W. H.
Jorda, L.
Knollenberg, J.
Kovacs, G.
Kramm, J. R.
Kuehrt, E.
Kueppers, M.
Lazzarin, M.
Lin, Z. Y.
Lopez-Moreno, J. J.
Magrin, S.
Marzari, F.
Michalik, H.
Moissl-Fraund, R.
Moreno, F.
Mottola, S.
Naletto, G.
Pajola, M.
Pommerol, Antoine
Physikalisches Institut, Weltraumforschung und Planetologie (WP)
Thomas, Nicolas
Physikalisches Institut, Weltraumforschung und Planetologie (WP)
Sabau, M. D.
Tubiana, C.
Additional Credits
Physikalisches Institut, Weltraumforschung und Planetologie (WP)
Series
Astronomy and astrophysics
Publisher
EDP Sciences
ISSN
0004-6361
Access(Rights)
restricted
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