Ro-vibrational excitation of an organic molecule (HCN) in protoplanetary disks
arXiv:1412.1847 · doi:10.1051/0004-6361/201425009
Abstract
(Abridged) Organic molecules are important constituents of protoplanetary disks. Their ro-vibrational lines observed in the near- and mid-infrared are commonly detected toward T Tauri disks. These lines are the only way to probe the chemistry in the inner few au where terrestrial planets form. To understand this chemistry, accurate molecular abundances have to be determined. This is complicated by excitation effects. Most analyses so far have made the assumption of local thermal equilibrium (LTE). Starting from estimates for the collisional rate coefficients of HCN, non-LTE slab models of the HCN emission were calculated to study the importance of different excitation mechanisms. Using a new radiative transfer model, the HCN emission from a full two-dimensional disk was then modeled to study the effect of the non-LTE excitation, together with the line formation. We ran models tailored to the T Tauri disk AS 205 (N) where HCN lines in both the 3 μm and 14 μm bands have been observed by VLT-CRIRES and the Spitzer Space Telescope. Reproducing the observed 3 μm / 14 μm flux ratios requires very high densities and kinetic temperatures ( cm and K), if only collisional excitation is accounted for. Radiative pumping can, however, excite the lines easily out to considerable radii 10 au. Consequently, abundances derived from LTE and non-LTE models do not differ by more than a factor of about 3. Models with both a strongly enhanced abundance within 1 au (jump abundance) and constant abundance can reproduce the current observations, but future observations with the MIRI instrument on JWST and METIS on the E-ELT can easily distinguish between the scenarios and test chemical models. Depending on the scenario, ALMA can detect rotational lines within vibrationally excited levels.
Accepted for publication in A&A, 20 pages, 18 figures
References in corpus (8)
- Protoplanetary Disk Structures in Ophiuchus
- Complex organic molecules in protoplanetary disks
- H2O and OH gas in the terrestrial planet-forming zones of protoplanetary disks
- Formation of simple organic molecules in inner T Tauri disks
- Warm HCN, C2H2, and CO in the disk of GV Tau
- A H13CN/HN13C linelist, model atmospheres and synthetic spectra for carbon stars
- Stellar and Circumstellar Properties of the Pre-Main Sequence Binary GV Tau from Infrared Spectroscopy
- Energetic radiation and the sulfur chemistry of protostellar envelopes: Submillimeter interferometry of AFGL 2591
Cited by in corpus (28)
- Different dust and gas radial extents in protoplanetary disks: consistent models of grain growth and CO emission
- MINDS. The detection of CO with JWST-MIRI indicates abundant CO in a protoplanetary disk
- The diverse chemistry of protoplanetary disks as revealed by JWST
- The Chemical Inventory of the Inner Regions of Planet-forming Disks -- The JWST/MINDS Program
- Observing Carbon & Oxygen Carriers in Protoplanetary Disks at Mid-infrared Wavelengths
- JWST Observations of Young protoStars (JOYS): overview of program and early results
- JWST Observations of Young protoStars (JOYS). Overview of gaseous molecular emission and absorption in low-mass protostars
- Missing water in Class I protostellar disks
- Probing planet formation and disk substructures in the inner disk of Herbig Ae stars with CO rovibrational emission
- The dry and carbon poor inner disk of TW Hya: evidence for a massive icy dust trap
- OH mid-infrared emission as a diagnostic of HO UV photodissociation. III. Application to planet-forming disks
- CO2-rich protoplanetary discs as a probe of dust radial drift & trapping
- The nitrogen carrier in protoplanetary disks
- The effects of dust evolution on disks in the mid-IR
- Resolved molecular line observations reveal an inherited molecular layer in the young disk around TMC1A
- FUV Irradiation and the Heat Signature of Accretion in Protoplanetary Disk Atmospheres
- The infrared line-emitting regions of T Tauri protoplanetary disks
- A Q-band line survey towards Orion KL using the Tianma radio telescope
- High-Resolution Mid-Infrared Spectroscopy of GV Tau N: Surface Accretion and Detection of Ammonia in a Young Protoplanetary Disk
- CLIcK: a Continuum and Line fItting Kit for circumstellar disks
- Reimagining the water snowline
- Understanding JWST water spectra: what can thermochemical models tell us about the (cold) water in protoplanetary disks?
- Time-resolved protoplanetary disk physics in DQ Tau with JWST
- Mid-infrared blends and continuum signatures of dust drift and accretion in protoplanetary disks
- Collisional Excitation in Space: Recent Advances and Future Challenges in the JWST Era
- Efficient computational methods for rovibrational transition rates in molecular collisions
- Protoplanetary Disk Chemistry
- Water UV-shielding in the terrestrial planet-forming zone: Implications from water emission