The low-frequency source of Saturn’s kilometric radiation

Author:

Lamy L.1ORCID,Zarka P.1ORCID,Cecconi B.1ORCID,Prangé R.1,Kurth W. S.2ORCID,Hospodarsky G.2ORCID,Persoon A.2ORCID,Morooka M.3ORCID,Wahlund J.-E.3ORCID,Hunt G. J.4ORCID

Affiliation:

1. Laboratoire d’Etudes Spatiales et d’Instrumentation en Astrophysique, Observatoire de Paris, Université Paris Sciences et Lettres, Centre National de la Recherche Scientifique, Sorbonne Université, Université Paris Diderot, Sorbonne Paris Cité, 5 Place Jules Janssen, 92195 Meudon, France.

2. Department of Physics and Astronomy, University of Iowa, Iowa City, IA 52242, USA.

3. Swedish Institute of Space Physics, Box 537, SE-751 21 Uppsala, Sweden.

4. Blackett Laboratory, Imperial College London, London SW7 2BW, UK.

Abstract

Cassini's final phase of exploration The Cassini spacecraft spent 13 years orbiting Saturn; as it ran low on fuel, the trajectory was changed to sample regions it had not yet visited. A series of orbits close to the rings was followed by a Grand Finale orbit, which took the spacecraft through the gap between Saturn and its rings before the spacecraft was destroyed when it entered the planet's upper atmosphere. Six papers in this issue report results from these final phases of the Cassini mission. Dougherty et al. measured the magnetic field close to Saturn, which implies a complex multilayer dynamo process inside the planet. Roussos et al. detected an additional radiation belt trapped within the rings, sustained by the radioactive decay of free neutrons. Lamy et al. present plasma measurements taken as Cassini flew through regions emitting kilometric radiation, connected to the planet's aurorae. Hsu et al. determined the composition of large, solid dust particles falling from the rings into the planet, whereas Mitchell et al. investigated the smaller dust nanograins and show how they interact with the planet's upper atmosphere. Finally, Waite et al. identified molecules in the infalling material and directly measured the composition of Saturn's atmosphere. Science , this issue p. eaat5434 , p. eaat1962 , p. eaat2027 , p. eaat3185 , p. eaat2236 , p. eaat2382

Funder

Jet Propulsion Laboratory

Centre National d’Etudes Spatiales

Institut National des Sciences de l'Univers, Centre National de la Recherche Scientifique

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference55 articles.

1. L. Lamy The Saturnian Kilometric Radiation before the Cassini Grand Finale in Planetary Radio Emissions VIII G. Fischer G. Mann M. Panchenko P. Zarka Eds. (Austrian Academy of Sciences Press Vienna 2017) pp. 171–190.

2. The electron–cyclotron maser for astrophysical application

3. Properties of Saturn kilometric radiation measured within its source region

4. Extraordinary field-aligned current signatures in Saturn's high-latitude magnetosphere: Analysis of Cassini data during Revolution 89

5. W. S. Kurth et al . A close encounter with a Saturn kilometric radiation source region in Planetary Radio Emissions VII H. O. Rucker W. S. Kurth P. Louarn G. Fischer Eds. (Austrian Academy of Sciences Press Vienna 2011) pp. 75–85.

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