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Spinning particles in Saturn's C ring from mid-infrared observations: Pre-Cassini mission results
Authors:Cédric Leyrat  Cécile Ferrari  Judicael Decriem  Stuart Pilorz
Institution:a Jet Propulsion Laboratory/NASA, California Institute of Technology, 4800 Oak Grove Drive, M/S 230-205, Pasadena, CA 91109, USA
b UMR AIM Universite Paris 7 - Denis Diderot, CEA/Saclay 91190, France
Abstract:Saturn's C ring thermal emission has been observed in mid-infrared wavelengths, at three different epochs and solar phase angles, using ground based instruments (CFHT in 1999 and VLT/ESO in 2005) and the Infrared Radiometer Instrument Spectrometer (IRIS) onboard the Voyager 1 spacecraft in 1980. Azimuthal variations of temperature in the C ring's inner region, observed at several phase angles, have been analyzed using our new standard thermal model Ferrari, C., Leyrat, C., 2006. Astron. Astrophys. 447, 745-760]. This model provides predicted ring temperatures for a monolayer ring composed of spinning icy spherical particles. We confirm the very low thermal inertia (on the order of 10 View the MathML source) found previously by Ferrari et al. Ferrari, C., Galdemard, P., Lagage, P.O., Pantin E., Quoirin, C., 2005. Astron. Astrophys. 441, 379-389] that reveals the very porous regolith at the surface of ring particles. We are able to explain both azimuthal variations of temperature and the strong asymmetry of the emission function between low and high phase angles. We show that large particles spinning almost synchronously might be present in the C ring to explain differences of temperature observed between low and high phase angle. Their cross section might represent about 45% of the total cross section. However, their numerical fraction is estimated to only ∼0.1% of all particles. Thermal behavior of other particles can be modeled as isothermal behavior. This work provides an indirect estimation of the particle's rotation rate in Saturn's rings from observations.
Keywords:Planetary rings  Saturn  rings  Infrared observations  Thermal histories  Planetary dynamics
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