Radial Profiles of Surface Density in Debris Discs
arXiv:2207.07678 · doi:10.1093/mnras/stac3411
Abstract
Resolved observations of debris discs can be used to derive radial profiles of Azimuthally-averaged Surface Density (ASD), which carries important information about the disc structure even in presence of non-axisymmetric features and has improved signal-to-noise characteristics. We develop a (semi-)analytical formalism allowing one to relate ASD to the underlying semi-major axis and eccentricity distributions of the debris particles in a straightforward manner. This approach does not involve the distribution of particle apsidal angles, thus simplifying calculations. It is a much faster, more flexible and effective way of calculating ASD than the Monte Carlo sampling of orbital parameters of debris particles. We present explicit analytical results based on this technique for a number of particle eccentricity distributions, including two cases of particular practical importance: a prescribed radial profile of eccentricity, and the Rayleigh distribution of eccentricities. We then show how our framework can be applied to observations of debris discs and rings for retrieving either the semi-major axis distribution or (in some cases) the eccentricity distribution of debris, thus providing direct information about the architecture and dynamical processes operating in debris discs. Our approach also provides a fast and efficient way of forward modeling observations. Applications of this technique to other astrophysical systems, e.g. the nuclear stellar disc in M31 or tenuous planetary rings, are also discussed.
16 pages, 13 figures, submitted to MNRAS, comments welcome
References in corpus (5)
- Dynamical evolution of an eccentric planet and a less massive debris disc
- The unexpected narrowness of eccentric debris rings: a sign of eccentricity during the protoplanetary disc phase
- Constraining planetesimal stirring: how sharp are debris disc edges?
- Rave: A non-parametric method for recovering the surface brightness and height profiles of edge-on debris disks
- Three-dimensional Keplerian orbit-superposition models of the nucleus of M31
Cited by in corpus (5)
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) II. The radial structure of debris discs
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) I: Motivation, sample, data reduction, and results overview
- Eccentric debris disc morphologies II: Surface brightness variations from overlapping orbits in narrow eccentric discs
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) III: The vertical structure of debris disks
- Testing the Impact of Planet-stirring, Self-stirring, and Mixed-stirring on Debris Disc Architecture: A Case Study of HD 16743