Comparing the reflectivity of ungrouped carbonaceous chondrites with that of short period comets like 2P/Encke
arXiv:2007.06212 · doi:10.1051/0004-6361/202037996
Abstract
Aims. The existence of asteroid complexes produced by the disruption of these comets suggests that evolved comets could also produce high-strength materials able to survive as meteorites. We chose as an example comet 2P/Encke, one of the largest object of the so-called Taurid complex. We compare the reflectance spectrum of this comet with the laboratory spectra of some Antarctic ungrouped carbonaceous chondrites to investigate whether some of these meteorites could be associated with evolved comets. Methods. We compared the spectral behaviour of 2P/Encke with laboratory spectra of carbonaceous chondrites. Different specimens of the common carbonaceous chondrite groups do not match the overall features and slope of comet 2P/Encke. Trying anomalous carbonaceous chondrites, we found two meteorites, Meteorite Hills 01017 and Grosvenor Mountains 95551, which could be good proxies for the dark materials forming this short-period comet. We hypothesise that these two meteorites could be rare surviving samples, either from the Taurid complex or another compositionally similar body. In any case, it is difficult to get rid of the effects of terrestrial weathering in these Antarctic finds, and further studies are needed. Future sample return from the so-called dormant comets could be also useful to establish a ground truth on the materials forming evolved short-period comets. Results. As a natural outcome, we think that identifying good proxies of 2P/Encke-forming materials might have interesting implications for future sample-return missions to evolved, potentially dormant or extinct comets. To understand the compositional nature of evolved comets is particularly relevant in the context of the future mitigation of impact hazard from these dark and dangerous projectiles.
Accepted for publication in A&A on July 6, 2020
References in corpus (11)
- Evidence for the formation of comet 67P/Churyumov-Gerasimenko through gravitational collapse of a bound clump of pebbles
- Comets formed in solar-nebula instabilities! -- An experimental and modeling attempt to relate the activity of comets to their formation process (corrigendum included)
- Hayabusa-2 Mission Target Asteroid 162173 Ryugu (1999 JU3): Searching for the Object's Spin-Axis Orientation
- Accretion of water in carbonaceous chondrites: current evidence and implications for the delivery of water to early Earth
- Discovery of a new branch of the Taurid meteoroid stream as a real source of potentially hazardous bodies
- Infrared detection of aliphatic organics on a cometary nucleus
- A Spitzer Study of Comets 2P/Encke, 67P/Churyumov-Gerasimenko, and C/2001 HT50 (LINEAR-NEAT)
- Photometry and polarimetry of the nucleus of comet 2P/Encke
- The role of pebble fragmentation in planetesimal formation II. Numerical simulations
- Spectral properties of the largest asteroids associated with Taurid Complex
- A plausible link between the asteroid 21 Lutetia and CH carbonaceous chondrites
Cited by in corpus (3)
- Distant formation and differentiation of outer main belt asteroids and carbonaceous chondrite parent bodies
- The 18 May 2024 Iberian superbolide from a sunskirting orbit: USG space sensors and ground-based independent observations
- The Reflectance Spectra of CV-CK Carbonaceous chondrites from the Near Infrared to the Visible