Cometary diversity and cometary families
arXiv:astro-ph/0703785 · doi:10.1016/j.icarus.2012.11.023
Abstract
Comets are classified from their orbital characteristics into two separate classes: nearly-isotropic, mainly long-period comets and ecliptic, short-period comets. Members from the former class are coming from the Oort cloud. Those of the latter class were first believed to have migrated from the Kuiper belt where they could have been accreted in situ, but recent orbital evolution simulations showed that they rather come from the trans-Neptunian scattered disc. These two reservoirs are not where the comets formed: they were expelled from the inner Solar System following interaction with the giant planets. If comets formed at different places in the Solar System, one would expect they show different chemical and physical properties. In the present paper, I review which differences are effectively observed: chemical and isotopic compositions, spin temperatures, dust particle properties, nucleus properties... and investigate whether these differences are correlated with the different dynamical classes. The difficulty of such a study is that long-period, nearly-isotropic comets from the Oort cloud are better known, from Earth-based observations, than the weak nearly-isotropic, short-period comets. On the other hand, only the latter are easily accessed by space missions.
Proceedings of the XVIIIemes Rencontres de Blois: Planetary Science: Challenges and Discoveries, 28th May - 2nd June 2006, Blois, France
References in corpus (13)
- A low mass for Mars from Jupiter's early gas-driven migration
- Thirty Years of Cometary Spectroscopy from McDonald Observatory
- Submillimetre observations of comets with Odin: 2001-2005
- Comet 17P/Holmes in Outburst: The Near Infrared Spectrum
- Temporal and Spatial Aspects of Gas Release During the 2010 Apparition of Comet 103P/Hartley-2
- Deep Impact : High Resolution Optical Spectroscopy with the ESO VLT and the Keck 1 telescope
- The cosmic-ray and gas content of the Cygnus region as measured in gamma rays by the Fermi Large Area Telescope
- The Peculiar Volatile Composition of Comet 8P/Tuttle: A Contact Binary of Chemically Distinct Cometesimals?
- Origin and Dynamical Evolution of Comets and their Reservoirs
- The Chemical Evolution of Protoplanetary Disks
- Rotation and Color Properties of the Nucleus of Comet 2P/Encke
- Radio observations of comet 9P/Tempel 1 before and after Deep Impact
- The formation heritage of Jupiter Family Comet 10P/Tempel 2 as revealed by infrared spectroscopy
Cited by in corpus (8)
- Planetary Spectrum Generator: an accurate online radiative transfer suite for atmospheres, comets, small bodies and exoplanets
- The Composition of Comets
- The Composition of Dust in Jupiter-Family Comets as Inferred from Infrared Spectroscopy
- Cometary compositions compared with protoplanetary disk midplane chemical evolution. An emerging chemical evolution taxonomy for comets
- Water in Comet 2/2003 K4 (LINEAR) with Spitzer
- Water in Comets 71P/Clark and C/2004 B1 (LINEAR) with Spitzer
- The formation heritage of Jupiter Family Comet 10P/Tempel 2 as revealed by infrared spectroscopy
- A Multi-Wavelength Study of Parent Volatile Abundances in Comet C/2006 M4 (SWAN)