ALMA observations of the eta Corvi debris disc: inward scattering of CO-rich exocomets by a chain of 3-30 M-circle plus planets?

作者:Marino S; Wyatt M C; Panic O; Matra L; Kennedy G M; Bonsor A; Kral Q; Dent W R F; Duchene G; Wilner D; Lisse C M; Lestrade J F; Matthews B
来源:Monthly Notices of the Royal Astronomical Society, 2017, 465(3): 2595-2615.
DOI:10.1093/mnras/stw2867

摘要

While most of the known debris discs present cold dust at tens of astronomical unit (au), a few young systems exhibit hot dust analogous to the Zodiacal dust. eta Corvi is particularly interesting as it is old and it has both, with its hot dust significantly exceeding the maximum luminosity of an in situ collisional cascade. Previous work suggested that this system could be undergoing an event similar to the Late Heavy Bombardment (LHB) soon after or during a dynamical instability. Here, we present ALMA observations of. Corvi with a resolution of 1.2 arcsec (similar to 22 au) to study its outer belt. The continuum emission is consistent with an axisymmetric belt, with a mean radius of 152 au and radial full width at half-maximum of 46 au, which is too narrow compared to models of inward scattering of an LHB-like scenario. Instead, the hot dust could be explained as material passed inwards in a rather stable planetary configuration. We also report a 4 sigma detection of CO at similar to 20 au. CO could be released in situ from icy planetesimals being passed in when crossing the H2O or CO2 ice lines. Finally, we place constraints on hidden planets in the disc. If a planet is sculpting the disc's inner edge, this should be orbiting at 75-100 au, with a mass of 3-30M(circle plus). and an eccentricity < 0.08. Such a planet would be able to clear its chaotic zone on a time-scale shorter than the age of the system and scatter material inwards from the outer belt to the inner regions, thus feeding the hot dust.

  • 出版日期2017-3