Interferometric mapping of the 3.3-mm continuum emission of comet 17P/Holmes after its 2007 outburst
J. Boissier, D. Bockel\'ee-Morvan, N. Biver, J. Crovisier, E., Lellouch, R. Moreno, and V. Zakharov

TL;DR
This study used interferometric observations to analyze the dust ejected by comet 17P/Holmes after its 2007 outburst, revealing two distinct dust components with different velocities, sizes, and masses, and estimating the total dust mass released.
Contribution
First detailed interferometric analysis of the comet's post-outburst dust emission, identifying two dust components and quantifying the total ejected dust mass.
Findings
Two dust components with distinct velocities and size distributions were identified.
The large-velocity shell contains smaller particles and accounts for most of the mass.
Total dust mass ejected was estimated to be 4-14 x 10^11 kg.
Abstract
Comet 17P/Holmes underwent a dramatic outburst in October 2007, caused by the sudden fragmentation of its nucleus and the production of a large quantity of grains scattering sunlight. We report on 90 GHz continuum observations carried out with the IRAM Plateau de Bure interferometer on 27.1 and 28.2 October 2007 UT, i.e., 4-5 days after the outburst. These observations probed the thermal radiation of large dust particles, and therefore provide the best constraints on the mass in the ejecta debris. The thermal emission of the debris was modelled and coupled to a time-dependent description of their expansion after the outburst. The analysis was performed in the Fourier plane. Visibilities were computed for the two observing dates and compared to the data to measure their velocity and mass. Optical data and 250-GHz continuum measurements published in the literature were used to further…
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