$Herschel$ SPIRE-FTS observations of RCW 120
J. A. Rod\'on (1, 2), A. Zavagno (2), J.-P. Baluteau (2), E. Habart, (3), M. K\"ohler (3), J. Le Bourlot (4), F. Le Petit (4), A. Abergel (3) ((1), European Southern Observatory, (2) Aix Marseille universit\'e, CNRS, LAM, (3), Institut d'Astrophysique Spatiale

TL;DR
This study uses Herschel SPIRE-FTS observations to analyze the physical conditions in RCW 120, revealing diverse gas temperatures, densities, and the presence of dense clumps and low-density PDRs in an expanding HII region.
Contribution
First detailed multi-line spectroscopic analysis of RCW 120 using Herschel data, combining diagnostics to characterize physical conditions across different regions.
Findings
Gas temperatures range from 45 to 250 K.
Densities are between 10^4 and 10^6 cm^-3.
Presence of dense clumps and low-density PDRs throughout RCW 120.
Abstract
The expansion of Galactic HII regions can trigger the formation of a new generation of stars. However, little is know about the physical conditions that prevail in these regions. We study the physical conditions that prevail in specific zones towards expanding HII regions that trace representative media such as the photodissociation region, the ionized region, and condensations with and without ongoing star formation. We use the SPIRE Fourier Transform Spectrometer (FTS) on board to observe the HII region RCW 120. Continuum and lines are observed in the m range. Line intensities and line ratios are obtained and used as physical diagnostics of the gas. We used the Meudon PDR code and the RADEX code to derive the gas density and the radiation field at nine distinct positions including the PDR surface and regions with and without star-formation activity. For the…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Gamma-ray bursts and supernovae · Astrophysical Phenomena and Observations
