Disentangling emission from star-forming regions in the Magellanic Clouds: Linking [OIII]88 micron and 24 micron
arXiv:2206.15417 · doi:10.1051/0004-6361/202243353
Abstract
This study explores the link between the [OIII]88mu emission, a well-known tracer of HII regions, and 24mu continuum, often used to trace warm dust in the ionized phases of galaxies. We investigate the local conditions driving the relation between those tracers in the Magellanic Clouds, comparing observations with Cloudy models consisting of an HII region plus a photodissociation region (PDR) component, varying the stellar age, the initial density (at the illuminated edge of the cloud), and the ionization parameter. We introduce a new parameter, cPDR, to quantify the proportion of emission arising from PDRs and that with an origin in HII regions along each line of sight. We use the ratio ([CII]+[OI])/[OIII] as a proxy for the ratio of PDR versus HII region emission, and compare it to [OIII]/24mu. The use of [OIII]/24mu and [OIII]/70mu together allows us to constrain the models most efficiently. We find a correlation over at least 3 orders of magnitude in [OIII]88mu and 24mu continuum in spatially resolved maps of the Magellanic Cloud regions as well as unresolved galaxy-wide low metallicity galaxies of the Dwarf Galaxy Survey. Most of the regions have low proportions of PDRs along the lines of sight (< 12%), while a limited area of some of the mapped regions can reach 30 to 50%. For most lines of sight within the star-forming regions we have studied in the Magellanic Clouds, HII regions are the dominant phase. We propose the use of the correlation between the [OIII]88mu and 24mu continuum as a new predictive tool to estimate, for example, the [OIII]88mu emission when the 24mu continuum is available or inversely. This can be useful to prepare for ALMA observations of [OIII]88mu in high-z galaxies. This simple and novel method may also provide a way to disentangle different phases along the line of sight, when other 3D information is not available.
Accepted by A&A June 21 2022 Abridged abstract
References in corpus (36)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- GREAT: the SOFIA high-frequency heterodyne instrument
- A Compendium of Far-Infrared Line and Continuum Emission for 227 Galaxies Observed by the Infrared Space Observatory
- The Herschel Dwarf Galaxy Survey: I. Properties of the low-metallicity ISM from PACS spectroscopy
- Reionization Era Bright Emission Line Survey: Selection and Characterization of Luminous Interstellar Medium Reservoirs in the z>6.5 Universe
- [CII] 158 m Emission as a Star Formation Tracer
- Near-Infrared and Star-forming properties of Local Luminous Infrared Galaxies
- [CII] 158m Emission and Metallicity in PDRs
- Spitzer Mid-Infrared Spectroscopy of Infrared Luminous Galaxies at z~2 I: the Spectra
- Tracing the reionization epoch with ALMA: [CII] emission in z~7 galaxies
- Ultraviolet Through Far-Infrared Spatially Resolved Analysis of the Recent Star Formation in M81 (NGC3031)
- A Herschel [CII] Galactic plane survey III: [CII] as a tracer of star formation
- The upGREAT 1.9 THz multi-pixel high resolution spectrometer for the SOFIA Observatory
- The Spatially Resolved [CII] Cooling Line Deficit in Galaxies
- The Origins of [CII] Emission in Local Star-forming Galaxies
- The Herschel Dwarf Galaxy Survey: II. Physical conditions, origin of [CII] emission, and porosity of the multiphase low-metallicity ISM
- ALMA reveals metals yet no dust within multiple components in CR7
- The Incidence of Highly-Obscured Star-Forming Regions in SINGS Galaxies
- Modelling [CI] emission from turbulent molecular clouds
- Far-infrared line spectra of active galaxies from the Herschel/PACS Spectrometer: the complete database
- Subaru High-z Exploration of Low-Luminosity Quasars (SHELLQs). XIII. Large-scale Feedback and Star Formation in a Low-Luminosity Quasar at z = 7.07 on the Local Black Hole to Host Mass Relation
- Far-infrared metallicity diagnostics: Application to local ultraluminous infrared galaxies
- First Detection of the [OIII] 88 micron Line at High Redshifts: Characterizing the Starburst and Narrow Line Regions in Extreme Luminosity Systems
- Significant Dust-Obscured Star Formation in Luminous Lyman-break Galaxies at
- Spiral structure in nearby galaxies II. comparative analysis and conclusions
- CO excitation, molecular gas density and interstellar radiation field in local and high-redshift galaxies
- Radiative transfer meets Bayesian statistics: where does a galaxy's [CII] emission come from?
- Using [CII] 158 micron Emission From Isolated ISM Phases as a Star-Formation Rate Indicator
- Disentangling the ISM phases of the dwarf galaxy NGC 4214 using [CII] SOFIA/GREAT observations
- Characterizing the Multi-Phase Origin of [CII] Emission in M101 and NGC 6946 with Velocity Resolved Spectroscopy
- The Case for Thermalization as a Contributor to the [CII] Deficit
- Photometric Observations of Dwarf Galaxies
- CO-Dark Star Formation and Black Hole Activity in 3C 368 at z = 1.131: Coeval Growth of Stellar and Supermassive Black Hole Masses
- Stellar, Gas, and Dust Emission of Star Forming Galaxies out to z~2
- Massive Star Formation in the LMC. I. N159 and N160 Complexes
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- LMC+: Large-scale mapping of [CII] and [OIII] in the LMC molecular ridge, I. Dataset and line ratio analyses