ALMA Observations of the HD~110058 debris disk
arXiv:2210.12275 · doi:10.3847/1538-4357/ac9cd3
Abstract
We present Atacama Large Millimeter Array (ALMA) observations of the young, gas-rich debris disk around HD110058 at 0.3-0.6\arcsec resolution. The disk is detected in the 0.85 and 1.3~mm continuum, as well as in the J=2-1 and J=3-2 transitions of CO and CO. The observations resolve the dust and gas distributions and reveal that this is the smallest debris disk around stars of similar luminosity observed by ALMA. The new ALMA data confirm the disk is very close to edge-on, as shown previously in scattered light images. We use radiative transfer modeling to constrain the physical properties of dust and gas disks. The dust density peaks at around 31~au and has a smooth outer edge that extends out to ~au. Interestingly, the dust emission is marginally resolved along the minor axis, which indicates that it is vertically thick if truly close to edge-on with an aspect ratio between 0.13 and 0.28. We also find that the CO gas distribution is more compact than the dust \ah{(similarly to the disk around 49 Ceti)}, which could be due to a low viscosity and a higher gas release rate at small radii. Using simulations of the gas evolution taking into account the CO photodissociation, shielding, and viscous evolution, we find that HD~110058's CO gas mass and distribution are consistent with a secondary origin scenario. Finally, we find that the gas densities may be high enough to cause the outward drift of small dust grains in the disk.
References in corpus (24)
- The Hipparcos-Gaia Catalog of Accelerations: Gaia EDR3 Edition
- Stellar and substellar companions from Gaia EDR3 -- Proper motion anomaly and resolved common proper motion pairs
- Protoplanetary disk masses from CO isotopologues line emission
- Detection of exocometary CO within the 440 Myr-old Fomalhaut belt: a similar CO+CO ice abundance in exocomets and Solar System comets
- Debris Disks in the Scorpius-Centaurus OB Association Resolved by ALMA
- Exocometary gas structure, origin and physical properties around Pictoris through ALMA CO multi-transition observations
- Molecular gas in debris disks around young A-type stars
- Five steps in the evolution from protoplanetary to debris disk
- Kuiper Belt-Like Hot and Cold Populations of Planetesimal Inclinations in the Pictoris Belt Revealed by ALMA
- The Mass of Stirring Bodies in the AU Mic Debris Disk Inferred from Resolved Vertical Structure
- A gap in HD 92945's broad planetesimal disc revealed by ALMA
- ALMA observations of the narrow HR 4796A debris ring
- A Comet Active Beyond the Crystallization Zone
- Population synthesis of exocometary gas around A stars
- Multiple Rings of Millimeter Dust Emission in the HD 15115 Debris Disk
- Survey of planetesimal belts with ALMA: gas detected around the Sun-like star HD 129590
- The vertical structure of debris disks and the impact of gas
- High Precision Dynamical Masses of Pre-Main Sequence Stars with ALMA and Gaia
- Constraining planetesimal stirring: how sharp are debris disc edges?
- Searching for Planets in Holey Debris Disks with the Apodizing Phase Plate
- Chemical analysis of early-type stars with planets
- Vertical evolution of exocometary gas: I. How vertical diffusion shortens the CO lifetime
- Modelling the Spatial Distribution and Origin of CO Gas in Debris Disks
- Atomic Gas in Debris Discs
Cited by in corpus (13)
- Deprojecting and constraining the vertical thickness of exoKuiper belts
- Primordial or Secondary? Testing models of debris disk gas with ALMA
- Stirred but not shaken: a multi-wavelength view of HD 16743's debris disc
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) I: Motivation, sample, data reduction, and results overview
- The vertical structure of debris discs and the role of disc gravity: A primer using a simplified model
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS): VI. Asymmetries and offsets
- An inner warp discovered in the disk around HD 110058 using VLT/SPHERE and HST/STIS
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) III: The vertical structure of debris disks
- Collisional damping in debris discs: Only significant if collision velocities are low
- Abundance analysis of stars hosting gas-rich debris disks
- Discovery of carbon monoxide emission from five debris disks around young A-type stars
- High CO/H2 ratios supports an exocometary origin for a CO-rich debris disk
- HD 44892: The youngest (or oldest?) gas-harbouring debris disc around an intermediate mass star