Search for signatures of dust in the Pluto-Charon system using Herschel/PACS observations
arXiv:1506.07657 · doi:10.1051/0004-6361/201525668
Abstract
In this letter we explore the environment of Pluto and Charon in the far infrared with the main aim to identify the signs of any possible dust ring, should it exist in the system. Our study is based on observations performed at 70 um with the PACS instrument onboard the Herschel Space Observatory at 9 epochs between March 14 and 19, 2012. The far-infrared images of the Pluto-Charon system are compared to those of the point spread function (PSF) reference quasar 3C454.3. The deviation between the observed Pluto-Charon and reference PSFs are less then 1 sigma indicating that clear evidence for an extended dust ring around the system was not found. Our method is capable of detecting a hypothetical ring with a total flux of ~3.3 mJy at a distance of ~153 000 km (~8.2 Pluto-Charon distances) from the system barycentre. We place upper limits on the total disk mass and on the column density in a reasonable disk configuration and analyse the hazard during the flyby of NASAs New Horizons in July 2015. This realistic model configuration predicts a column density of 8.7x10^(-10) gcm^(-2) along the path of the probe and an impactor mass of 8.7x10^(-5) g.
10 pages, 4 figures, 2 tables
References in corpus (5)
- A ring system detected around the Centaur (10199) Chariklo
- The New Horizons Pluto Kuiper belt Mission: An Overview with Historical Context
- Possible ring material around centaur (2060) Chiron
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Cited by in corpus (4)
- Trans-Neptunian objects and Centaurs at thermal wavelengths
- The long-wavelength thermal emission of the Pluto-Charon system from Herschel observations. Evidence for emissivity effects
- The New Horizons and Hubble Space Telescope Search For Rings, Dust, and Debris in the Pluto-Charon System
- A Pluto-Charon Sonata: The Dynamical Architecture of the Circumbinary Satellite System