High CO/H2 ratios supports an exocometary origin for a CO-rich debris disk
arXiv:2511.01708 · doi:10.1051/0004-6361/202557969
Abstract
Over 20 exocometary belts host detectable circumstellar gas, mostly in the form of CO. Two competing theories for its origin have emerged, positing the gas to be primordial or secondary. Primordial gas survives from the belt's parent protoplanetary disk and is therefore H-rich. Secondary gas is outgassed \textit{in-situ} by exocomets and is relatively H-poor. Discriminating between these scenarios has not been possible for belts hosting unexpectedly large quantities of CO. We aim to break this gas origin dichotomy \textit{via} direct measurement of H column densities in two edge-on CO-rich exocometary belts around 15 Myr-old A-type stars, constraining the ratio and CO gas lifetimes. Observing edge-on belts enables rovibrational absorption spectroscopy against the stellar background. We present near-IR CRIRES+ spectra of HD 110058 and HD 131488 which provide the first direct probe of H gas in CO-rich exocometary belts. We target the H (v=1-0 S(0)) line at 2223.3 nm and and the CO rovibrational lines in the range 2333.8-2335.5 nm and derive constraints on column densities along the line-of-sight to the stars. We strongly detect CO but not H in the CRIRES+ spectra. This allows us to place lower limits on the ratios of and for HD 110058 and HD 131488 respectively. These constraints demonstrate that at least for HD 110058, the exocometary gas is compositionally distinct and significantly H-poor, compared to the ratios typical of protoplanetary disks. We also find H alone is unlikely to shield CO over the lifetime of the systems. Overall this suggests that the gas in CO-rich belts is most likely not primordial in origin, supporting the presence of exocometary gas.
Accepted for publication in A&A, 15 pages, 13 figures
References in corpus (28)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- Protoplanetary Disk Structures in Ophiuchus
- Building Terrestrial Planets
- Accretion in the Rho-Oph pre-main sequence stars
- Mass measurements in protoplanetary disks from hydrogen deuteride
- CO Depletion in Protoplanetary Disks: A Unified Picture Combining Physical Sequestration and Chemical Processing
- 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
- CRIRES on sky at the ESO Very Large Telescope
- HD far infrared emission as a measure of protoplanetary disk mass
- Perturbers: SPHERE detection limits to planetary-mass companions in protoplanetary disks
- The Dust and Gas Around beta Pictoris
- Quantum calculations of H2-H2 collisions: from ultracold to thermal energies
- Population synthesis of exocometary gas around A stars
- On the Ubiquity and Stellar Luminosity Dependence of Exocometary CO Gas: Detection around M Dwarf TWA 7
- Lack of other molecules in CO-rich debris discs: is it primordial or secondary gas?
- Primordial or Secondary? Testing models of debris disk gas with ALMA
- ALMA Observations of the HD~110058 debris disk
- First Detection of Hydrogen in the β Pictoris Gas Disk
- Vertical evolution of exocometary gas: I. How vertical diffusion shortens the CO lifetime
- Extrasolar Kuiper Belts
- The ALMA survey to Resolve exoKuiper belt Substructures (ARKS) IV: CO gas imaging and overview
- The Mysterious Affair of the H in AU Mic
- A Constraint on the Amount of Hydrogen from the CO Chemistry in Debris Disks
- Detection of H in the TWA 7 System: A Probable Circumstellar Origin