The ionized and hot gas in M17 SW: SOFIA/GREAT THz observations of [C II] and 12CO J=13-12
J.P. Perez-Beaupuits (1), H. Wiesemeyer (1), V. Ossenkopf (2), J., Stutzki (2), R. Guesten (1), R. Simon (2), H.-W. Huebers (3, 4), O. Ricken, (2, 1) ((1) MPIfR, Bonn, Germany, (2) I. Phys. Inst. der Uni. zu Koln,, Germany, (3) Deutsches Zentrum fur Luft- und Raumfahrt

TL;DR
This study uses SOFIA/GREAT THz observations to map ionized, neutral, and molecular gas in M17 SW, revealing complex spatial and velocity structures and challenging existing PDR models.
Contribution
First velocity-resolved [C II] maps of M17 SW, showing non-association with other tracers and revealing complex gas layers and clumps.
Findings
[C II] emission extends over 2 pc into the molecular cloud.
[C II] line profile covers a broader velocity range than CO and [C I].
High-density clumps facilitate hot CO formation.
Abstract
With new THz maps that cover an area of ~3.3x2.1 pc^2 we probe the spatial distribution and association of the ionized, neutral and molecular gas components in the M17 SW nebula. We used the dual band receiver GREAT on board the SOFIA airborne telescope to obtain a 5'.7x3'.7 map of the 12CO J=13-12 transition and the [C II] 158 um fine-structure line in M17 SW and compare the spectroscopically resolved maps with corresponding ground-based data for low- and mid-J CO and [C I] emission. For the first time SOFIA/GREAT allow us to compare velocity-resolved [C II] emission maps with molecular tracers. We see a large part of the [C II] emission, both spatially and in velocity, that is completely non-associated with the other tracers of photon-dominated regions (PDR). Only particular narrow channel maps of the velocity-resolved [C II] spectra show a correlation between the different gas…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Spectroscopy and Laser Applications
