JWST reveals cosmic ray dominated chemistry in the local ULIRG IRAS 07251$-$0248
G. Speranza, M. Pereira-Santaella, M. Ag\'undez, E. Gonz\'alez-Alfonso, I. Garc\'ia-Bernete, J. R. Goicoechea, M. Imanishi, D. Rigopoulou, M. G. Santa-Maria, and N. Thatte

TL;DR
This study uses JWST data to analyze molecular absorption in a local ULIRG, revealing cosmic ray dominated chemistry and a warm expanding gas shell likely linked to molecular outflows.
Contribution
First detailed JWST mid-infrared spectral analysis of molecular cations and neutrals in a ULIRG, demonstrating cosmic ray influence on chemistry and gas dynamics.
Findings
Molecular absorptions are blueshifted by 160 km/s.
Rotational temperatures range from 42 to 185 K, indicating IR radiative pumping.
High cosmic ray ionization rates suggest cosmic ray dominated chemistry.
Abstract
We analyse the ro-vibrational absorption bands of various molecular cations (HCO, HCNH, and NH) and neutral species (HCN, HNC, and HCN) detected in the \textit{James Webb Space Telescope}/Mid-Infrared Instrument Medium Resolution Spectrometer spectrum (4.9--27.9\,m) of the local ultra luminous infrared galaxy IRAS~072510248. We find that the molecular absorptions are blueshifted by 160\,km\,s relative to the systemic velocity of the target. Using local thermal equilibrium (LTE) excitation models, we derive rotational temperatures () from 42 to 185\,K for these absorption bands. This range of measured can be explained by infrared (IR) radiative pumping as a by--product of the strength, effective critical density, and opacity of each molecular band. Thus, these results suggest that these absorptions originate in a warm…
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