Hydrocarbon chemistry in inner regions of planet forming disks
Jayatee Kanwar, Inga Kamp, Peter Woitke, Christian Rab, Wing-Fai Thi,, Michiel Min

TL;DR
This paper investigates hydrocarbon chemistry in the inner regions of planet-forming disks using advanced thermo-chemical models, focusing on c2H2 formation pathways and their spectral signatures with JWST data.
Contribution
It expands hydrocarbon chemical networks in disk models and analyzes their impact on mid-infrared spectral features, improving interpretation of JWST observations.
Findings
Expanded hydrocarbon chemistry networks in disk models.
Identified potential missing pathways for c2H2 formation.
Analyzed the effect of chemistry on spectral line fluxes.
Abstract
The analysis of the mid-infrared spectra helps understanding the composition of the gas in the inner, dense and warm terrestrial planet forming region of disks around young stars. ALMA has detected hydrocarbons in the outer regions of the planet forming disk and Spitzer detected \ce{C2H2} in the inner regions. JWST- MIRI provides high spectral resolution observations of \ce{C2H2} and a suite of more complex hydrocarbons are now reported. Interpreting the fluxes observed in the spectra is challenging and radiation thermo-chemical codes are needed to properly take into account the disk structure, radiative transfer, chemistry and thermal balance. Various disk physical parameters like the gas-to-dust ratio, dust evolution including radial drift, dust growth and settling can affect the fluxes observed in the mid-IR. Still, thermo-chemical disk models were not always successful in matching…
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Taxonomy
TopicsPhase Equilibria and Thermodynamics · Spectroscopy and Laser Applications · Astrophysics and Star Formation Studies
