Exploring HNC and HCN line emission as probes of the protoplanetary disk temperature
arXiv:2102.06338 · doi:10.1051/0004-6361/202039336
Abstract
The distributions and abundances of molecules in protoplanetary disks are powerful tracers of the physical and chemical disk structures. The abundance ratios of HCN and its isomer HNC are known to be sensitive to gas temperature. Their line ratios might therefore offer a unique opportunity to probe the properties of the emitting gas. Using the 2D thermochemical code DALI, we ran a set of disk models accounting for different stellar and disk properties, with an updated chemical network for the nitrogen chemistry. These modeling results were then compared with observations, including new ALMA observations of HNC for the TW Hya disk and HNC for 29 disks in Lupus. Similar to CN, HCN and HNC have brighter line emission in models with larger disk flaring angles and higher UV fluxes. HNC and HCN are predicted to be abundant in the warm surface layer and outer midplane region, which results in ring-shaped emission patterns. However, the precise emitting regions and emission morphology depend on the probed transition, as well as on other parameters such as C and O abundances. The modeled HNC-to-HCN line intensity ratio increases from in the inner disk to up to 0.8 in the outer disk regions, which can be explained by efficient HNC destruction at high temperatures. Disk-integrated HNC line fluxes from current scarce observations and its radial distribution in the TW Hya disk are broadly consistent with our model predictions. The HNC-to-HCN flux ratio robustly increases with radius (decreasing temperature), but its use as a chemical thermometer in disks is affected by other factors, including UV flux and C and O abundances. High-spatial resolution ALMA disk observations of HNC and HCN that can locate the emitting layers would have the great potential to constrain both the disk thermal and UV radiation structures, and also to verify our understanding of the nitrogen chemistry.
accepted for publication in A&A
References in corpus (22)
- Lupus disks with faint CO isotopologues: low gas/dust or large carbon depletion?
- Protoplanetary disk masses from CO isotopologues line emission
- Hydrocarbon emission rings in protoplanetary disks induced by dust evolution
- Gas density drops inside dust cavities of transitional disks around young stars observed with ALMA
- Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
- Different dust and gas radial extents in protoplanetary disks: consistent models of grain growth and CO emission
- Protoplanetary disk rings and gaps across ages and luminosities
- The interstellar gas-phase chemistry of HCN and HNC
- An ALMA Survey of CO isotopologue emission from Protoplanetary Disks in Chamaeleon I
- The HNC/HCN Ratio in Star-Forming Regions
- HCN/HNC intensity ratio: a new chemical thermometer for the molecular ISM
- A survey of C2H, HCN, and C18O in protoplanetary disks
- HD far infrared emission as a measure of protoplanetary disk mass
- CN rings in full protoplanetary disks around young stars as probes of disk structure
- Chemical Modelling of Young Stellar Objects, I. Method and Benchmarks
- An ALMA Survey of HCO in Protoplanetary Disks
- Variable HCO Emission in the IM Lup Disk: X-ray Driven Time-Dependent Chemistry?
- An unbiased ALMA spectral survey of the LkCa 15 and MWC 480 protoplanetary disks
- Unbiased mm-wave Line Surveys of TW Hya and V4046 Sgr: The Enhanced C2H and CN Abundances of Evolved Protoplanetary Disks
- Mass constraints for 15 protoplanetary disks from HD 1-0
- A New Radio Molecular Line Survey of Planetary Nebulae: HNC/HCN as a Diagnostic of Ultraviolet Irradiation
- An Unbiased 1.3 mm Emission Line Survey of the Protoplanetary Disk Orbiting LkCa 15
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- The chemical inventory of the planet-hosting disk PDS 70
- The first ALMA survey of protoplanetary discs at 3 mm: demographics of grain growth in the Lupus region
- A major asymmetric ice trap in a planet-forming disk IV. Nitric oxide gas and a lack of CN tracing sublimating ices and a C/O ratio
- Linking the dust and chemical evolution: Taurus and Perseus -- New collisional rates for HCN, HNC, and their C, N, and H isotopologues
- Sampling Molecular Gas in the Helix Planetary Nebula: Variation in HNC/HCN with UV Flux
- Molecules in the peculiar age-defying source IRAS 19312+1950
- Unmasking the physical information inherent to interstellar spectral line profiles with Machine Learning. I. Application of LTE to HCN and HNC transitions
- Protoplanetary Disk Chemistry