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Evolution of mobile phases in cometary interiors

Christopher M Fellows, Trevor C Brown, Andrew Cooper, Marco Parigi

Research output: Contribution to journalArticlepeer-review

Abstract

Beginning with loose aggregations of dust particles coated with heterogeneous ices under vacuum at Kuiper Belt temperatures, moving to Jupiter/Saturn distances and eventually to low-perihelion orbit, we consider the likely development of the gaseous phase within a cometary nucleus over the course of its lifetime. From the perspective of physical chemistry, we consider limits on the spatial and temporal distribution and composition of this gaseous phase. The implications of the gaseous phase for heat transfer and for the possible spatial and temporal development of liquid phases are calculated. We conclude that the likely temperatures, pressures, and compositions beneath the outer crust of typical cometary nuclei are such that fluidised phases can exist at significant depths and that these reservoirs give a coherent explanation for the high-intensity outbursts observed from cometary nuclei at large distances from perihelion.
Original languageEnglish
Article numbere006
Pages (from-to)1-9
JournalPublications of the Astronomical Society of Australia
Volume37
DOIs
Publication statusPublished - 17 Feb 2020

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