CHAMP+ observations of warm gas in M17 SW
J.P. P\'erez-Beaupuits (1), M. Spaans (1), M.R. Hogerheijde (2),, R.G\"usten (3), A. Baryshev (4), W. Boland (2,5) ((1) Kapteyn Astronomical, Institute, (2) Leiden Observatory, (3) Max-Planck Institute for Radio, Astronomy, (4) SRON Netherlands Institute for Space Research

TL;DR
This study uses high-resolution observations of mid-J molecular lines to analyze the physical conditions and spatial distribution of warm, dense gas in the M17 SW nebula, revealing detailed structure and temperature estimates.
Contribution
First detailed mapping of warm, dense gas in M17 SW using multiple molecular lines and radiative transfer models, providing new insights into the gas distribution and physical conditions.
Findings
Warm gas extends up to 2.2 pc from the ridge.
Excitation temperature of clumps up to ~120 K.
Warm, dense gas constitutes about 2% of total molecular gas.
Abstract
Since the main cooling lines of the gas phase are important tracers of the interstellar medium in Galactic and extragalactic sources, proper and detailed understanding of their emission, and the ambient conditions of the emitting gas, is necessary for a robust interpretation of the observations. With high resolution (7"-9") maps (~3x3 pc^2) of mid-J molecular lines we aim to probe the physical conditions and spatial distribution of the warm (50 to few hundred K) and dense gas (n(H_2)>10^5 cm^-3) across the interface region of M17 SW nebula. We have used the dual color multiple pixel receiver CHAMP+ on APEX telescope to obtain a 5'.3x4'.7 map of the J=6-5 and J=7-6 transitions of 12CO, the 13CO J=6-5 line, and the {^3P_2}-{^3P_1} 370 um fine-structure transition of [C I] in M17 SW. LTE and non-LTE radiative transfer models are used to constrain the ambient conditions. The warm gas…
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