Prediction of forbidden ultraviolet and visible emissions in comet 67P/Churyumov-Gerasimenko
arXiv:1511.05496 · doi:10.3847/0004-637X/818/2/102
Abstract
Remote observation of spectroscopic emissions is a potential tool for the identification and quantification of various species in comets. CO Cameron band (to trace \cod) and atomic oxygen emissions (to trace HO and/or CO, CO) have been used to probe neutral composition in the cometary coma. Using a coupled-chemistry emission model, various excitation processes controlling CO Cameron band and different atomic oxygen and atomic carbon have been modelled in comet 67P-Churyumov-Gerasimenko at 1.29~AU (perihelion) and at 3~AU heliocentric distances, which is being explored by ESA's Rosetta mission. The intensities of CO Cameron band, atomic oxygen and atomic carbon emission lines as a function of projected distance are calculated for different CO and CO volume mixing ratios relative to water. Contributions of different excitation processes controlling these emissions are quantified. We assess how CO and/or CO volume mixing ratios with respect to HO can be derived based on the observed intensities of CO Cameron band, atomic oxygen, and atomic carbon emission lines.The results presented in this work serve as base line calculations to understand the behaviour of low out-gassing cometary coma and compare them with the higher gas production rate cases (e.g. comet Halley). Quantitative analysis of different excitation processes governing the spectroscopic emissions is essential to study the chemistry of inner coma and to derive neutral gas composition.
46 pages, 12 figures, Accepted in The Astrophysical Journal
References in corpus (9)
- The radiative lifetime of metastable CO ()
- Alice: The Rosetta Ultraviolet Imaging Spectrograph
- Measurements of the Near-Nucleus Coma of Comet 67P/Churyumov-Gerasimenko with the Alice Far-Ultraviolet Spectrograph on Rosetta
- Coupled Chemistry-Emission Model for Atomic Oxygen Green and Red-doublet Emissions in Comet C/1996 B2 Hyakutake
- Evolution of HO, CO, and CO Production in Comet C/2009 P1 Garradd During the 2011-2012 Apparition
- On the Solar EUV Deposition in the Inner Comae of Comets with Large Gas Production Rates
- Atomic Oxygen in the Comae of Comets
- Forbidden oxygen lines at various nucleocentric distances in comets
- Photochemistry of atomic oxygen green and red-doublet emissions in comets at larger heliocentric distances
Cited by in corpus (4)
- Atomic carbon, nitrogen, and oxygen forbidden emission lines in the water-poor comet C/2016 R2 (Pan-STARRS)
- Reactive collision of electrons with CO in cometary coma
- A physico-chemical model to study the ion densitydistribution in the inner coma of comet C/2016 R2(Pan-STARRS)
- A photochemical model of ultraviolet atomic line emissions in the inner coma of comet 67P/Churyumov-Gerasimenko