Constraining planetesimal stirring: how sharp are debris disc edges?
arXiv:2104.02072 · doi:10.1093/mnras/stab771
Abstract
The dust production in debris discs by grinding collisions of planetesimals requires their orbits to be stirred. However, stirring levels remain largely unconstrained, and consequently the stirring mechanisms as well. This work shows how the sharpness of the outer edge of discs can be used to constrain the stirring levels. Namely, the sharper the edge is the lower the eccentricity dispersion must be. For a Rayleigh distribution of eccentricities (), I find that the disc surface density near the outer edge can be parametrised as , where approximates the maximum semi-major axis and defines the edge smoothness. If the semi-major axis distribution has sharp edges is roughly , or if semi-major axes have diffused due to self-stirring. This model is fitted to ALMA data of five wide discs: HD 107146, HD 92945, HD 206893, AU Mic and HR 8799. The results show that HD 107146, HD 92945 and AU Mic have the sharpest outer edges, corresponding to values of , and if their discs are self-stirred, suggesting the presence of Pluto-sized objects embedded in the disc. Although these stirring values are larger than typically assumed, the radial stirring of HD 92945 is in good agreement with its vertical stirring constrained by the disc height. HD 206893 and HR~8799, on the other hand, have smooth outer edges that are indicative of scattered discs since both systems have massive inner companions.
Accepted for publication in MNRAS. 15 ppages, 11 figures
References in corpus (40)
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Debris Disk Evolution Around A Stars
- Transience of hot dust around sun-like stars
- Variations on Debris Disks: Icy Planet Formation at 30-150 AU for 1-3 Solar Mass Main Sequence Stars
- Long-Term Collisional Evolution of Debris Disks
- Steady-State Size Distributions for Collisional Populations: Analytical Solution with Size-Dependent Strength
- Collisional processes and size distribution in spatially extended debris discs
- Formation of close in Super-Earths \& Mini-Neptunes: Required Disk Masses \& Their Implications
- Near-infrared scattered light properties of the HR4796A dust ring: a measured scattering phase function from 13.6deg to 166.6deg
- Do Two Temperature Debris Disks Have Multiple Belts?
- Turbulence sets the length scale for planetesimal formation: Local 2D simulations of streaming instability and planetesimal formation
- Outer edges of debris discs: how sharp is sharp?
- A Complete ALMA Map of the Fomalhaut Debris Disk
- ALMA observations of the Corvi debris disc: inward scattering of CO-rich exocomets by a chain of 3-30 M planets?
- Kuiper Belt-Like Hot and Cold Populations of Planetesimal Inclinations in the Pictoris Belt Revealed by ALMA
- Dynamical evolution of an eccentric planet and a less massive debris disc
- The evolution of dust in discs influenced by external photoevaporation
- Planetesimal Population Synthesis: Pebble Flux Regulated Planetesimal Formation
- In-depth study of moderately young but extremely red, very dusty substellar companion HD206893B
- ALMA observations of the debris disk around the young Solar Analog HD 107146
- Gap Clearing by Planets in a Collisional Debris Disk
- The Northern Arc of Eridani's Debris Ring as Seen by ALMA
- A gap in HD 92945's broad planetesimal disc revealed by ALMA
- ALMA observations of the narrow HR 4796A debris ring
- The Mass of Stirring Bodies in the AU Mic Debris Disk Inferred from Resolved Vertical Structure
- ALMA Detection of Extended Millimeter Halos in the HD 32297 and HD 61005 Debris Disks
- X-ray photoevaporation's limited success in the formation of planetesimals by the streaming instability
- A Occurrence Rate of Debris Discs around F stars in the Pic Moving Group
- Does warm debris dust stem from asteroid belts?
- The unexpected narrowness of eccentric debris rings: a sign of eccentricity during the protoplanetary disc phase
- The challenge of measuring the phase function of debris disks. Application to HR\,4796
- Dust Populations in the Iconic Vega Planetary System Resolved by ALMA
- Clearing residual planetesimals by sweeping secular resonances in transitional disks: a lone-planet scenario for the wide gaps in debris disks around Vega and Fomalhaut
- On the cavity of a debris disc carved by a giant planet
- Shaping HR8799's outer dust belt with an unseen planet
- Dust Spreading in Debris Discs: Do Small Grains Cling on to Their Birth Environment?
- Debris Disks in Multi-Planet Systems: Are Our Inferences Compromised by Unseen Planets?
- Relating grain size distributions in circumstellar discs to the spectral index at millimetre wavelengths
- A multi-wavelength study of the debris disc around 49 Cet
- Atmospheric parameters of Cepheids from flux ratios with ATHOS: I. The temperature scale