ALMA 360 pc high-frequency observations reveal warm dust in the center of a quasar
arXiv:2502.14539 · doi:10.1051/0004-6361/202453279
Abstract
The temperature of the cold dust in z>6 galaxies is a potential tracer of Active Galactic Nucleus (AGN) and stellar feedback, and is the dominant source of uncertainty in inferring properties from the far-infrared (FIR) emission of these galaxies. We present the first resolved dust temperature map in a quasar host galaxy. We combine new 360 pc resolution ALMA Band 9 continuum observations with literature 190 pc Band 6 observations to derive the dust temperature and opacity at 0.1<r<0.5 kpc scales in a luminous quasar host galaxy (J2348-3054). We find that the dust temperature (and opacity) increases at the center (r<216 pc) of the galaxy up to K, and potentially up to K at r<110 pc. The combination of the resolved and integrated FIR Spectral Energy Distribution (SED) further reveal a dust temperature gradient and a significant contribution of the AGN hot dust torus at GHz. By taking into account the torus contribution and resolved optically-thick emission, we derive a total infrared luminosity () and corresponding star-formation rate (SFR), that are at least a factor ( dex) lower than previous measurements assuming optically-thin emission. We compare the resolved dust temperature, mass and IR luminosity profiles to simulations where they are only reproduced by models in which the AGN radiation heats the dust in the center of the galaxy. Our observations provide evidence that dust in J2348--3054 cannot be assumed to be uniformly cold and optically thin. Whether J2348-3054 is representative of the larger population of high-redshift quasars and galaxies remains to be determined with dedicated high-resolution and high-frequency ALMA observations.
5 pages + Appendices. Accepted in A&A Letters
References in corpus (24)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- Physical properties of 15 quasars at
- The ALPINE-ALMA [CII] Survey: data processing, catalogs, and statistical source properties
- Reionization Era Bright Emission Line Survey: Selection and Characterization of Luminous Interstellar Medium Reservoirs in the z>6.5 Universe
- Very extended cold gas, star formation and outflows in the halo of a bright QSO at z>6
- The ALPINE-ALMA [CII] survey. Little to no evolution in the [CII]-SFR relation over the last 13 Gyr
- Kiloparsec-scale ALMA Imaging of [CII] and Dust Continuum Emission of 27 Quasar Host Galaxies at z~6
- The X-shooter/ALMA Sample of Quasars in the Epoch of Reionization. II. Black Hole Masses, Eddington Ratios, and the Formation of the First Quasars
- Molecular gas in three z~7 quasar host galaxies
- 400 pc Imaging of a Massive Quasar Host Galaxy at a Redshift of 6.6
- No evidence for [CII] halos or high-velocity outflows in z>6 quasar host galaxies
- ALMA 200 pc imaging of a z~7 quasar reveals a compact, disk-like host galaxy
- Physical constraints on the extended interstellar medium of the z=6.42 quasar J1148+5251: [CII] 158um, [NII] 205um and [OI] 146um observations
- An empirical study of dust properties at the earliest epochs
- Infrared emission of galaxies: AGN imprints
- Spatially resolved dust properties and quasar-galaxy decomposition of a HyLIRG at z = 4.4
- The interstellar medium distribution, gas kinematics, and system dynamics of the far-infrared luminous quasar SDSS J2310+1855 at
- Subaru High-z Exploration of Low-Luminosity Quasars (SHELLQs) XII. Extended [C II] Structure (Merger or Outflow) in a z = 6.72 Red Quasar
- The black hole and host galaxy growth in an isolated QSO observed with ALMA
- Is the star formation rate in quasars overestimated?
- ALMA 300 pc resolution imaging of a z=6.79 quasar: no evidence for supermassive black hole influence on the [C II] kinematics
- Spatially resolved dust properties over 50 kpc in a hyperluminous galaxy merger at
Cited by in corpus (4)
- No [CII] or dust detection in two Little Red Dots at z > 7
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- Uncovering the absorbed atomic Universe with the [OI]63um line
- Islands of Electromagnetic Tranquility in Our Galactic core and Little Red Dots that Shelter Molecules and Prebiotic Chemistry