Double-ringed debris discs could be the work of eccentric planets: explaining the strange morphology of HD 107146
arXiv:1507.04367 · doi:10.1093/mnras/stv1847
Abstract
We investigate the general interaction between an eccentric planet and a coplanar debris disc of the same mass, using analytical theory and n-body simulations. Such an interaction could result from a planet-planet scattering or merging event. We show that when the planet mass is comparable to that of the disc, the former is often circularised with little change to its semimajor axis. The secular effect of such a planet can cause debris to apsidally anti-align with the planet's orbit (the opposite of what may be naively expected), leading to the counter-intuitive result that a low-mass planet may clear a larger region of debris than a higher-mass body would. The interaction generally results in a double-ringed debris disc, which is comparable to those observed in HD 107146 and HD 92945. As an example we apply our results to HD 107146, and show that the disc's morphology and surface brightness profile can be well-reproduced if the disc is interacting with an eccentric planet of comparable mass (~10-100 Earth masses). This hypothetical planet had a pre-interaction semimajor axis of 30 or 40 au (similar to its present-day value) and an eccentricity of 0.4 or 0.5 (which would since have reduced to ~0.1). Thus the planet (if it exists) presently resides near the inner edge of the disc, rather than between the two debris peaks as may otherwise be expected. Finally we show that disc self-gravity can be important in this mass regime and, whilst it would not affect these results significantly, it should be considered when probing the interaction between a debris disc and a planet.
Submitted to MNRAS, uploaded in revised form
References in corpus (8)
- Origins of Eccentric Extrasolar Planets: Testing the Planet-Planet Scattering Model
- Molecular Gas Clumps from the Destruction of Icy Bodies in the Pictoris Debris Disk
- STIS Imaging of the HR 4796A Circumstellar Debris Ring
- Dynamical evolution of an eccentric planet and a less massive debris disc
- A Survey for Massive Giant Planets in Debris Disks with Evacuated Inner Cavities
- ALMA observations of the debris disk around the young Solar Analog HD 107146
- Constraining the orbits of sub-stellar companions imaged over short orbital arcs
- A Resolved Ring of Debris Dust Around the Solar Analog HD 107146
Cited by in corpus (33)
- Exocometary gas in the HD 181327 debris ring
- A gap in the planetesimal disc around HD 107146 and asymmetric warm dust emission revealed by ALMA
- Solution to the debris disc mass problem: planetesimals are born small?
- Radial Surface Density Profiles of Gas and Dust in the Debris Disk around 49 Ceti
- Planet populations inferred from debris discs: insights from 178 debris systems in the ISPY, LEECH and LIStEN planet-hunting surveys
- A gap in HD 92945's broad planetesimal disc revealed by ALMA
- Insights into the planetary dynamics of HD 206893 with ALMA
- The unseen planets of double belt debris disk systems
- Resolving faint structures in the debris disk around TWA7
- Formation of Gaps in Self-Gravitating Debris Disks by Secular Resonance in a Single-planet System I: A Simplified Model
- High resolution ALMA and HST images of q Eri: an asymmetric debris disc with an eccentric Jupiter
- HD 106906: A Case Study for External Perturbations of a Debris Disk
- Bringing "The Moth" to Light: A Planet-Sculpting Scenario for the HD 61005 Debris Disk
- Constraining planetesimal stirring: how sharp are debris disc edges?
- The clumpy structure of Eridani's debris disc revisited by ALMA
- Dust production in the debris disk around HR 4796 A
- Empty gaps? Depleting annular regions in debris discs by secular resonance with a two-planet system
- Fomalhaut b could be massive and sculpting the narrow, eccentric debris disc, if in mean-motion resonance with it
- Resolving Structure in the Debris Disk around HD 206893 with ALMA
- Polarimetry and flux distribution in the debris disk around HD 32297
- Gap carving by a migrating planet embedded in a massive debris disc
- On the cavity of a debris disc carved by a giant planet
- 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
- Transient events in bright debris discs: Collisional avalanches revisited
- The vertical structure of debris discs and the role of disc gravity: A primer using a simplified model
- Debris Disks: Probing Planet Formation
- Numerical predictions for planets in the debris discs of HD 202628 and HD 207129
- Self-gravity of debris discs can strongly change the outcomes of interactions with inclined planets
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS): VI. Asymmetries and offsets
- Limits on the presence of planets in systems with debris disks: HD 92945 and HD 107146
- Dynamical Constraints on Outer Planets in Super-Earth Systems
- Feasibility of the debris ring transit method for the solar-like star HD 107146 by an occulted galaxy