VLT near- to mid-IR imaging and spectroscopy of the M17 UC1-IRS5 region
Zhiwei Chen, Dieter E.A. Nuernberger, Rolf Chini, Zhibo Jiang, and Min, Fang

TL;DR
This study uses VLT near- to mid-infrared imaging and spectroscopy to analyze the physical properties and environment of young stellar objects and massive star formation in the M17 UC1-IRS5 region, revealing details about star formation processes and feedback effects.
Contribution
It provides new insights into the properties of young stellar objects, their accretion termination mechanisms, and the structure of the surrounding PDRs in the M17 star-forming region.
Findings
IRS5A is a high-mass protostar (~9 M_sun) with evidence of terminated accretion.
The H_2 emission indicates dense PDRs with two temperature components.
Outflows from UC1 are influenced by the expanding HII region.
Abstract
We investigate the surroundings of the hypercompact HII region M17 UC1 to probe the physical properties of the associated young stellar objects and the environment of massive star formation. Five of the seven point sources in this region show -band excess emission. Geometric match is found between the H_2 emission and near-IR polarized light in the vicinity of IRS5A, and between the diffuse mid-IR emission and near-IR polarization north of UC1. The H_2 emission is typical for dense PDRs, which are FUV pumped initially and repopulated by collisional de-excitation. The spectral types of IRS5A and B273A are B3-B7 V/III and G4-G5 III, respectively. The observed infrared luminosity L_IR in the range 1-20 micron is derived for three objects; we obtain 2.0x10^3 L_\sun for IRS5A, 13 L_\sun for IRS5C, and 10 L_\sun for B273A. IRS5 might be a young quadruple system. Its primary star IRS5A is…
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