We analyse FIR dust continuum measurements for 14 galaxies (redshift z ≍ 7) in the ALMA Reionization Era Bright Emission Line Survey (REBELS) Large Program to derive their physical properties. Our model uses three input data, i.e. (a) the UV spectral slope, β, (b) the observed UV continuum flux at 1500 Å, F1500, (c) the observed continuum flux at ≈158μm, F158, and considers Milky Way (MW) and SMC extinction curves, along with different dust geometries. We find that REBELS galaxies have 28-90.5 per cent of their star formation obscured; the total (UV+IR) star formation rates are in the range 31.51M⊙, which is likely inconsistent with pure SN production, and might require dust growth via accretion of heavy elements from the interstellar medium. With the SFR predicted by the model and a MW extinction curve, REBELS galaxies detected in [C II] nicely follow the local LCII-SFR relation, and are approximately located on the Kennicutt-Schmidt relation. The sample-averaged gas depletion time is 0.11y−2P Gyr, where yP is the ratio of the gas-to-stellar distribution radius. For some systems, a solution simultaneously matching the observed (β, F1500, F158) values cannot be found. This occurs when the index Im = (F158/F1500)/(β - βint), where βint is the intrinsic UV slope, exceeds I∗m≈1120 for an MW curve. For these objects, we argue that the FIR and UV emitting regions are not co-spatial, questioning the use of the IRX-β relation.

The ALMA REBELS Survey. Epoch of Reionization giants: Properties of dusty galaxies at z sim 7 / Ferrara, A; Sommovigo, L; Dayal, P; Pallottini, A; J Bouwens, R; Gonzalez, V; Inami, H; Smit, R; A Bowler, R A; Endsley, R; Oesch, P; Schouws, S; Stark, D; Stefanon, M; Aravena, M; da Cunha, E; De Looze, I; Fudamoto, Y; Graziani, L; Hodge, J; Riechers, D; Schneider, R; B Algera, H S; Barrufet, L; S Hygate, A P; Labb??, I; Li, C; Nanayakkara, T; Topping, M; van der Werf, P. - In: MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY. - ISSN 0035-8711. - 512:1(2022), pp. 58-72. [10.1093/mnras/stac460]

The ALMA REBELS Survey. Epoch of Reionization giants: Properties of dusty galaxies at z sim 7

L Graziani;R Schneider;
2022

Abstract

We analyse FIR dust continuum measurements for 14 galaxies (redshift z ≍ 7) in the ALMA Reionization Era Bright Emission Line Survey (REBELS) Large Program to derive their physical properties. Our model uses three input data, i.e. (a) the UV spectral slope, β, (b) the observed UV continuum flux at 1500 Å, F1500, (c) the observed continuum flux at ≈158μm, F158, and considers Milky Way (MW) and SMC extinction curves, along with different dust geometries. We find that REBELS galaxies have 28-90.5 per cent of their star formation obscured; the total (UV+IR) star formation rates are in the range 31.51M⊙, which is likely inconsistent with pure SN production, and might require dust growth via accretion of heavy elements from the interstellar medium. With the SFR predicted by the model and a MW extinction curve, REBELS galaxies detected in [C II] nicely follow the local LCII-SFR relation, and are approximately located on the Kennicutt-Schmidt relation. The sample-averaged gas depletion time is 0.11y−2P Gyr, where yP is the ratio of the gas-to-stellar distribution radius. For some systems, a solution simultaneously matching the observed (β, F1500, F158) values cannot be found. This occurs when the index Im = (F158/F1500)/(β - βint), where βint is the intrinsic UV slope, exceeds I∗m≈1120 for an MW curve. For these objects, we argue that the FIR and UV emitting regions are not co-spatial, questioning the use of the IRX-β relation.
2022
methods: analytical; ISM: dust; extinction; galaxies: high-redshift; infrared: ISM; data analysis; Astrophysics - Astrophysics of Galaxies; Astrophysics - Cosmology and Nongalactic Astrophysics
01 Pubblicazione su rivista::01a Articolo in rivista
The ALMA REBELS Survey. Epoch of Reionization giants: Properties of dusty galaxies at z sim 7 / Ferrara, A; Sommovigo, L; Dayal, P; Pallottini, A; J Bouwens, R; Gonzalez, V; Inami, H; Smit, R; A Bowler, R A; Endsley, R; Oesch, P; Schouws, S; Stark, D; Stefanon, M; Aravena, M; da Cunha, E; De Looze, I; Fudamoto, Y; Graziani, L; Hodge, J; Riechers, D; Schneider, R; B Algera, H S; Barrufet, L; S Hygate, A P; Labb??, I; Li, C; Nanayakkara, T; Topping, M; van der Werf, P. - In: MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY. - ISSN 0035-8711. - 512:1(2022), pp. 58-72. [10.1093/mnras/stac460]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1624893
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