Vertical and radial distribution of atomic carbon in HD 163296
arXiv:2403.05042 · doi:10.1051/0004-6361/202348523
Abstract
In protoplanetary disks, atomic carbon is expected to originate from the PDR at the disk surface where CO is dissociated by UV photons coming from the stellar, or external interstellar, radiation field. Even though atomic carbon has been detected in several protoplanetary disks, there is a lack of spatially resolved observations of it. For HD 163296 protoplanetary disk, we aim to obtain both radial and vertical structure of [CI] line emission and perform the first direct comparison of this tracer with optically thick line emission CO . We used archival ALMA data for [CI] and previously published CO data in HD 163296. Through the software of disksurf we extracted the vertical structure, meanwhile radial profiles were obtained directly from imaging. Brand new DALI modelling was employed to perform direct comparison to the data. We found that these tracers are collocated radially but not vertically, where CO emission is, on average, located at higher altitudes, as it is also the case for other tracers in the same disk. Due to this difference in vertical height of the emission, the optically thick CO emission line appears to trace the highest altitudes, despite the expected formation mechanism of [CI] in the disk. The latter phenomena may be due to efficient mixing of the upper layers of the disk, or UV photons penetrating deeper than we expected.
References in corpus (9)
- Meridional flows in the disk around a young star
- Direct mapping of the temperature and velocity gradients in discs. Imaging the vertical CO snow line around IM Lupi
- Molecules with ALMA at Planet-forming Scales (MAPS) IV: Emission Surfaces and Vertical Distribution of Molecules
- Exocometary gas structure, origin and physical properties around Pictoris through ALMA CO multi-transition observations
- The Disc Miner I: A statistical framework to detect and quantify kinematical perturbations driven by young planets in discs
- Directly tracing the vertical stratification of molecules in protoplanetary disks
- Molecules with ALMA at Planet-forming Scales (MAPS) XI: CN and HCN as Tracers of Photochemistry in Disks
- Investigating the Relative Gas and Small Dust Grain Surface Heights in Protoplanetary Disks
- A localized kinematic structure detected in atomic carbon emission spatially coincident with a proposed protoplanet in the HD 163296 disk
Cited by in corpus (5)
- exoALMA V: Gaseous Emission Surfaces and Temperature Structures
- exoALMA XV: Interpreting the height of CO emission layer
- Vertical CO surfaces as a probe for protoplanetary disk mass and carbon depletion
- Edge-On Disk Study (EODS) III: Molecular Stratification in the Flying Saucer Disk
- Spatial distribution of organics in the Horsehead nebula: Signposts of chemistry driven by atomic carbon