Eccentric debris disc morphologies I: exploring the origin of apocentre and pericentre glows in face-on debris discs
arXiv:2112.02973 · doi:10.1093/mnras/stab3566
Abstract
The location of surface brightness maxima (e.g. apocentre and pericentre glow) in eccentric debris discs are often used to infer the underlying orbits of the dust and planetesimals that comprise the disc. However, there is a misconception that eccentric discs have higher surface densities at apocentre and thus necessarily exhibit apocentre glow at long wavelengths. This arises from the expectation that the slower velocities at apocentre lead to a "pile up'" of dust, which fails to account for the greater area over which dust is spread at apocentre. Instead we show with theory and by modelling three different regimes that the morphology and surface brightness distributions of face-on debris discs are strongly dependent on their eccentricity profile (i.e. whether this is constant, rising or falling with distance). We demonstrate that at shorter wavelengths the classical pericentre glow effect remains true, whereas at longer wavelengths discs can either demonstrate apocentre glow or pericentre glow. We additionally show that at long wavelengths the same disc morphology can produce either apocentre glow or pericentre glow depending on the observational resolution. Finally, we show that the classical approach of interpreting eccentric debris discs using line densities is only valid under an extremely limited set of circumstances, which are unlikely to be met as debris disc observations become increasingly better resolved.
14 pages, 11 figures, Accepted 2021 December 1. Received 2021 September 9; in original form 2021 July 26 - MNRAS
References in corpus (12)
- Exocometary gas structure, origin and physical properties around Pictoris through ALMA CO multi-transition observations
- A Complete ALMA Map of the Fomalhaut Debris Disk
- Kuiper Belt-Like Hot and Cold Populations of Planetesimal Inclinations in the Pictoris Belt Revealed by ALMA
- A gap in HD 92945's broad planetesimal disc revealed by ALMA
- ALMA observations of the narrow HR 4796A debris ring
- Apocenter glow in eccentric debris disks: implications for Fomalhaut and epsilon Eridani
- Local and global dynamics of eccentric astrophysical discs
- High resolution ALMA and HST images of q Eri: an asymmetric debris disc with an eccentric Jupiter
- The unexpected narrowness of eccentric debris rings: a sign of eccentricity during the protoplanetary disc phase
- Hamiltonian hydrodynamics of eccentric discs
- Resolving the outer ring of HD 38206 using ALMA and constraining limits on planets in the system
- Twisted debris: how differential secular perturbations shape debris disks