Radial and vertical constraints on the icy origin of HCO in the HD 163296 Protoplanetary Disk
arXiv:2404.06133 · doi:10.3847/1538-4357/ad3cdb
Abstract
HCO is a small organic molecule widely detected in protoplanetary disks. As a precursor to grain-surface formation of CHOH, HCO is considered an important precursor of O-bearing organic molecules that are locked in ices. Still, since gas-phase reactions can also form HCO, there remains an open question on the channels by which organics form in disks, and how much the grain versus the gas pathways impact the overall organic reservoir. We present spectrally and spatially resolved Atacama Large Millimeter/submillimeter Array observations of several ortho- and para-HCO transitions toward the bright protoplanetary disk around the Herbig Ae star HD 163296. We derive column density, excitation temperature, and ortho-to-para ratio (OPR) radial profiles for HCO, as well as disk-averaged values of cm, K, and , respectively. We empirically determine the vertical structure of the emission, finding vertical heights of . From the profiles, we find a relatively constant with radius, but still consistent with among the uncertainties, a secondary increase of in the outer disk, and low values that decrease with disk radius. Our resulting radial, vertical, and OPR constraints suggest an increased UV penetration beyond the dust millimeter edge, consistent with an icy origin but also with cold gas-phase chemistry. This Herbig disk contrasts previous results for the T Tauri disk, TW Hya, which had a larger contribution from cold gas-phase chemistry. More observations of other sources are needed to disentangle the dominant formation pathway of HCO in protoplanetary disks.
21 pages, 4 tables, 10 figures; V2: minor changes, matches the published version in ApJ
References in corpus (28)
- The NumPy array: a structure for efficient numerical computation
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- Multi-Scale CLEAN deconvolution of radio synthesis images
- 2021 Census of Interstellar, Circumstellar, Extragalactic, Protoplanetary Disk, and Exoplanetary Molecules
- Complex organic molecules in protoplanetary disks
- Astrochemistry and compositions of planetary systems
- 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
- ExoMol line lists VIII: A variationally computed line list for hot formaldehyde
- Production of complex organic molecules: H-atom addition versus UV irradiation
- Molecules with ALMA at Planet-forming Scales (MAPS) VI: Distribution of the small organics HCN, C2H, and H2CO
- An ALMA Survey of HCO in Protoplanetary Disks
- A major asymmetric ice trap in a planet-forming disk: I. Formaldehyde and methanol
- ALMA chemical survey of disk-outflow sources in Taurus (ALMA-DOT) II: Vertical stratification of CO, CS, CN, HCO, and CHOH in a Class I disk
- Directly tracing the vertical stratification of molecules in protoplanetary disks
- DCO, DCN and ND reveal three different deuteration regimes in the disk around the Herbig Ae star HD163296
- Upper limits on CHOH in the HD 163296 protoplanetary disk: evidence for a low gas-phase CHOH/HCO ratio
- Molecules with ALMA at Planet-forming Scales (MAPS) XI: CN and HCN as Tracers of Photochemistry in Disks
- Increased HCO production in the outer disk around HD 163296
- Tracing snowlines and C/O ratio in a planet-hosting disk: ALMA molecular line observations towards the HD169142 disk
- Organic molecules in the protoplanetary disk of DG Tau revealed by ALMA
- The TW Hya Rosetta Stone Project II: Spatially resolved emission of formaldehyde hints at low-temperature gas-phase formation
- Empirical Line Lists in the ExoMol Database
- Complex organic molecules in protoplanetary disks : X-ray photodesorption from methanol-containing ices. Part I -- Pure methanol ices
- Discovery of Line Pressure Broadening and Direct Constraint on Gas Surface Density in a Protoplanetary Disk
- Complex organic molecules in protoplanetary disks: X-ray photodesorption from methanol-containing ices. Part II -- Mixed methanol-CO and methanol-H2O ices
Cited by in corpus (7)
- exoALMA V: Gaseous Emission Surfaces and Temperature Structures
- ALMA reveals thermal and non-thermal desorption of methanol ice in the HD 100546 protoplanetary disk
- Vertical CO surfaces as a probe for protoplanetary disk mass and carbon depletion
- Evidence for a Sharp CO Snowline Transition in a Protoplanetary Disk and Implications for Millimeter-wave Observations of CO Isotopologues
- 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
- The identification of new Herbig Ae/Be stars from LAMOST DR7