Calibration of mid- to far-infrared spectral lines in galaxies
arXiv:2105.04584 · doi:10.1051/0004-6361/202140696
Abstract
Mid- to far-infrared (IR) lines are suited to study dust obscured regions in galaxies, because IR spectroscopy allows us to explore the most hidden regions where heavily obscured star formation as well as accretion onto supermassive black-holes occur. This is mostly important at redshifts of 1<z<3, when most of the baryonic mass in galaxies has been assembled. We provide reliable calibrations of the mid- to far-IR ionic fine structure lines, the brightest H2 pure rotational lines and the Polycyclic Aromatic Hydrocarbons (PAHs) features, that will be used to analyse current and future observations in the mm/submm range from the ground, as well as mid-IR spectroscopy from the upcoming James Webb Space Telescope. We use three samples of galaxies observed in the local Universe: star forming galaxies, AGN and low-metallicity dwarf galaxies. For each population we derive different calibrations of the observed line luminosities versus the total IR luminosities. We derive spectroscopic measurements of SFR and BHAR using mid- and far-IR fine structure lines, H2 pure rotational lines and PAH features. We derive robust star-formation tracers based on the [CII]158 m line; the sum of the [OI]63m and [OIII]88m lines; a combination of the neon and sulfur mid-IR lines; the bright PAH features at 6.2 and 11.3 m, and the H2 rotational lines at 9.7, 12.3 and 17 m. We propose the [CII]158m line, the combination of two neon lines and, for solar-like metallicity galaxies that may harbor an AGN, the PAH11.3m feature as the best SFR tracers. A reliable measure of the BHAR can be obtained using the [OIV]25.9 m and the [NeV]14.3 and 24.3 m lines. For the most commonly observed fine-structure lines in the far-IR we compare our calibration with the existing ALMA observations of high redshift galaxies finding overall a good agreement with local results.
30 pages, 35 figures, 3 tables, Accepted for publication by A&A
References in corpus (18)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- The James Webb Space Telescope
- Metallicity Effects on Dust Properties in Starbursting Galaxies
- The Herschel Dwarf Galaxy Survey: I. Properties of the low-metallicity ISM from PACS spectroscopy
- [CII] 158m Emission and Metallicity in PDRs
- The metallicity of the most distant quasars
- Spitzer IRS spectra of a large sample of Seyfert galaxies: a variety of infrared SEDs in the local AGN population
- The Mid-infrared Fine-structure Lines of Neon as an Indicator of Star For mation Rate in Galaxies
- Spitzer/IRS 5-35 um Low-Resolution Spectroscopy of the 12 um Seyfert Sample
- A Nearby Galaxy Perspective on Dust Evolution. Scaling relations and constraints on the dust build-up in galaxies with the DustPedia and DGS samples
- 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
- CASSIS: The Cornell Atlas of Spitzer/Infrared Spectrograph Sources. II. High-resolution observations
- Spitzer-IRS high resolution spectroscopy of the 12μm Seyfert galaxies: I. First results
- A dense, solar metallicity ISM in the z=4.2 dusty star-forming galaxy SPT0418-47
- The ALMA Development Program: Roadmap to 2030
- First detection of the [OI] 63-um emission from a redshift 6 dusty galaxy
- The Case for Thermalization as a Contributor to the [CII] Deficit
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- A theoretical investigation of far-infrared fine structure lines at and of the origin of the [OIII]88/[CII]158 enhancement
- Galaxy evolution through infrared and submillimeter spectroscopy: Measuring star formation and black hole accretion with JWST and ALMA
- MICONIC: JWST/MIRI-MRS reveals heavily reprocessed PAH emission in the circum-nuclear disc of Centaurus A