No Evidence for Enhanced [O iii] 88 μ m Emission in a z ∼ 6 Quasar Compared to Its Companion Starbursting Galaxy

Walter, Fabian and Riechers, Dominik and Novak, Mladen and Decarli, Roberto and Ferkinhoff, Carl and Venemans, Bram and Bañados, Eduardo and Bertoldi, Frank and Carilli, Chris and Fan, Xiaohui and Farina, Emanuele and Mazzucchelli, Chiara and Neeleman, Marcel and Rix, Hans-Walter and Strauss, Michael A. and Uzgil, Bade and Wang, Ran (2018) No Evidence for Enhanced [O iii] 88 μ m Emission in a z ∼ 6 Quasar Compared to Its Companion Starbursting Galaxy. The Astrophysical Journal, 869 (2). L22. ISSN 2041-8213

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Abstract

We present Atacama Large Millimeter/submillimeter Array band 8 observations of the [O iii] 88 μm line and the underlying thermal infrared continuum emission in the z = 6.08 quasar CFHQS J2100–1715 and its dust-obscured starburst companion galaxy (projected distance: ∼60 kpc). Each galaxy hosts dust-obscured star formation at rates >100 M⊙ yr−1, but only the quasar shows evidence for an accreting 109 M⊙ black hole. Therefore we can compare the properties of the interstellar medium in distinct galactic environments in two physically associated objects, ∼1 Gyr after the big bang. Bright [O iii] 88 μm emission from ionized gas is detected in both systems; the positions and linewidths are consistent with earlier [C ii] measurements, indicating that both lines trace the same gravitational potential on galactic scales. The [O iii] 88 μm/far-infrared (FIR) luminosity ratios in both sources fall in the upper range observed in local luminous infrared galaxies of similar dust temperature, although the ratio of the quasar is smaller than in the companion. This suggests that gas ionization by the quasar (expected to lead to strong optical [O iii] 5008 Å emission) does not dominantly determine the quasar's FIR [O iii] 88 μm luminosity. Both the inferred number of photons needed for the creation of O++ and the typical line ratios can be accounted for without invoking extreme (top-heavy) stellar initial mass functions in the starbursts of both sources.

Item Type: Article
Subjects: Pustakas > Physics and Astronomy
Depositing User: Unnamed user with email support@pustakas.com
Date Deposited: 06 Jun 2023 08:08
Last Modified: 25 Jan 2024 04:26
URI: http://archive.pcbmb.org/id/eprint/664

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