The physical properties of the dust in the RCW 120 HII region as seen by Herschel
L.D. Anderson, A. Zavagno, J.A. Rodon, D. Russeil, A. Abergel, P. Ade,, P. Andre, H. Arab, J.-P. Baluteau, J.-P. Bernard, K. Blagrave, F. Boulanger,, M. Cohen, M. Compiegne, P. Cox, E. Dartois, G. Davis, R. Emery, T. Fulton, C., Gry, E. Habart, M. Huang, C. Joblin, S.C. Jones

TL;DR
This study uses Herschel data to map dust temperature and emissivity in RCW 120, revealing a temperature gradient and suggesting the region's ongoing destruction and influence on star formation.
Contribution
First detailed spectral energy distribution mapping of RCW 120 at high resolution, linking dust temperature with emissivity index and revealing physical processes.
Findings
Dust temperature ranges from >30K inside to ~10K in cold filaments.
Evidence of PDR destruction and radiation leakage affecting star formation.
Anti-correlation between dust temperature and emissivity index supported by Herschel data.
Abstract
Context. RCW 120 is a well-studied, nearby Galactic HII region with ongoing star formation in its surroundings. Previous work has shown that it displays a bubble morphology at mid-infrared wavelengths and has a massive layer of collected neutral material seen at sub-mm wavelengths. Given the well-defined photo-dissociation region (PDR) boundary and collected layer, it is an excellent laboratory to study the "collect and collapse" process of triggered star formation. Using Herschel Space Observatory data at 100, 160, 250, 350, and 500 micron, in combination with Spitzer and APEX-LABOCA data, we can for the first time map the entire spectral energy distribution of an HII region at high angular resolution. Aims. We seek a better understanding of RCW120 and its local environment by analysing its dust temperature distribution. Additionally, we wish to understand how the dust emissivity…
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