Javascript must be enabled to continue!
Comet 2I/Borisov in Comparison with Comets of the Solar System
View through CrossRef
The brief review summarizes data on the chemical and mineral composition, as well as on the phys ical properties, of the first extrasolar comet 2I/Borisov, obtained from observations that were carried out from September 2019 to the end of March 2020. It is noted that the qualitative chemical composition of the volatile and mineral components comet 2I/Borisov is similar to the composition of comets in the Solar System, but there are differences that indicate the specific conditions for the formation of its nucleus in a circumstellar gas and dust disk. Different release rates of CO and H2O molecules in the vicinity of perihelion indicate the pos sible heterogeneity of the comet’s nucleus, which was formed from more homogeneous ice blocks, but differ ing in composition. These constituent blocks could have formed over a wide range of radial distances: from the snow line of H2O to the CO snow line. Their accumulation in the comet’s nucleus indicates large-scale mixing of protocometary bodies in the circumstellar disk. No spectra of finely crystalline magnesium silicates were found in cometary coma of 2I/Borisov, which can be interpreted as the absence of a significant amount of gas and dust transfer from the inner hot regions of the disk to the outside, into the zone of formation of protocometary bodies.
The Russian Academy of Sciences
Title: Comet 2I/Borisov in Comparison with Comets of the Solar System
Description:
The brief review summarizes data on the chemical and mineral composition, as well as on the phys ical properties, of the first extrasolar comet 2I/Borisov, obtained from observations that were carried out from September 2019 to the end of March 2020.
It is noted that the qualitative chemical composition of the volatile and mineral components comet 2I/Borisov is similar to the composition of comets in the Solar System, but there are differences that indicate the specific conditions for the formation of its nucleus in a circumstellar gas and dust disk.
Different release rates of CO and H2O molecules in the vicinity of perihelion indicate the pos sible heterogeneity of the comet’s nucleus, which was formed from more homogeneous ice blocks, but differ ing in composition.
These constituent blocks could have formed over a wide range of radial distances: from the snow line of H2O to the CO snow line.
Their accumulation in the comet’s nucleus indicates large-scale mixing of protocometary bodies in the circumstellar disk.
No spectra of finely crystalline magnesium silicates were found in cometary coma of 2I/Borisov, which can be interpreted as the absence of a significant amount of gas and dust transfer from the inner hot regions of the disk to the outside, into the zone of formation of protocometary bodies.
Related Results
FeI and NiI in comets
FeI and NiI in comets
Metals have been found in cometary dust by in-situ experiments onboard the Giotto and Rosetta spacecrafts[4,10] as well as in dust particles collected by the Stardust spacecraft[11...
Unusual polarimetric properties for interstellar comet 2I/Borisov
Unusual polarimetric properties for interstellar comet 2I/Borisov
<p><strong>Introduction</strong></p>
<p>Only two interstellar objects have been observed passing through our S...
HCREM, a rendezvous mission to comet Halley
HCREM, a rendezvous mission to comet Halley
- IntroductionWe propose a Halley Comet Rendezvous Mission (HCREM) feasible with currently available propulsion technology with a target launch date around 2040. The mission concep...
Outcome of Collisions in the Early Outer Solar System
Outcome of Collisions in the Early Outer Solar System
AbstractThe processes leading to the formation of planetary systems leave behind a significant mass of small bodies - up to 35 Earth masses depending on the model [1] - orbiting at...
Ion velocity distribution functions at a low activity comet
Ion velocity distribution functions at a low activity comet
We study the transition period of induced comet magnetospheres between the simple deflection of the solar wind due to mass loading and a fully developed bow shock. We present exper...
Distribution of long-period comets: comparison between simulations and observations
Distribution of long-period comets: comparison between simulations and observations
Aims. This paper is devoted to a comparison between observations and simulations of the so-called Oort spike formed by the “new” observable long-period comets.
Methods. The...
Boulder Mobility on Comets: Insights from Rosetta Observations and Numerical Modelling
Boulder Mobility on Comets: Insights from Rosetta Observations and Numerical Modelling
Boulder displacement on comets, including the migration of rocks up to tens of meters and relocation of decimeter- to meter-scale debris, are critical processes in reshaping the nu...
Comet Dust Tail Analysis using the Finson-Probstein Model
Comet Dust Tail Analysis using the Finson-Probstein Model
The fine-structure detail of several comet dust tails is analysed from amateur and professional comet images using the Finson-Probstein mdoel. Given the date and time of the image ...

