Parsec scales of carbon chain and complex organic molecules in AFGL 2591 and IRAS 20126
P. Freeman, S. Bottinelli, R. Plume, E. Caux, C. Monaghan, B., Mookerjea

TL;DR
This study investigates the presence and formation of carbon chain and complex organic molecules in high-mass star-forming regions AFGL 2591 and IRAS 20126+4104 using spectral surveys, LTE modeling, and chemical simulations.
Contribution
It provides new observational data and modeling insights into the chemical environment and formation pathways of molecules in high-mass protostellar regions.
Findings
Detection of multiple carbon chain and organic molecules.
Excitation temperatures of 20-30 K for carbon chains.
Evidence of shock processes influencing molecule abundances.
Abstract
(Abridged) There is a diverse chemical inventory in protostellar regions leading to the classification of extreme types of systems. Warm carbon chain chemistry sources, for one, are the warm and dense regions near a protostar containing unsaturated carbon chain molecules. Since the presentation of this definition in 2008, there is a growing field to detect and characterise these sources. The details are lesser known in relation to hot cores and in high-mass star-forming regions -- regions of great importance in galactic evolution. To investigate the prevalence of carbon chain species and their environment in high-mass star-forming regions, we have conducted targeted spectral surveys of two sources in the direction of Cygnus X -- AFGL 2591 and IRAS 20126+4104 -- with the Green Bank Telescope and the IRAM 30m Telescope. We have constructed a Local Thermodynamic Equilibrium (LTE) model…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · SAS software applications and methods · Molecular Spectroscopy and Structure
