An ALMA Band 7 survey of SDSS/Herschel quasars in Stripe 82: I. The properties of the 870 micron counterparts
arXiv:2508.18823 · doi:10.1051/0004-6361/202555105
Abstract
(Abridged) Quasar studies with Herschel/SPIRE often report host luminosities ranging from 10^{12} to 10^{14} Lsun, suggestive of star formation rates (SFRs) of up to several thousand Msun/yr. Due to the limited spatial resolution of SPIRE, it is uncertain whether the far-infrared (FIR) emission originates from the quasar itself, nearby sources, or unrelated sources within the SPIRE beam. High-resolution observations at wavelengths close to the SPIRE coverage are needed to pinpoint the true source of the FIR emission. In this work we unambiguously identify the ALMA Band 7 counterparts of a statistical sample of 152 FIR-bright SDSS quasars and estimate the multiplicity rates among these systems. Based on the multiplicities, we assess the importance of mergers as triggers for concomitant accretion onto supermassive black holes (SMBHs) and extreme star formation. In ~60% of cases, the submm emission originates from a single counterpart within the SPIRE beam, centred on the optical coordinates of the quasar. The multiplicity rate increases by a factor of ~2.5 between redshifts 1 and 2.5. The incidence of multiplicities is consistent among broad absorption line (BAL) quasars and non-BAL quasars. The multiplicities observed in a fraction of the sample indicate that, while mergers enhance gas inflow efficiency, there must be viable alternatives for driving synchronous SMBH growth and intense star formation in isolated systems. We report the serendipitous detection of two CO(6-5) and three CO(7-6) transitions out of the eight such transitions expected based on the spectral setup and the redshifts of the objects in the sample. Higher transitions are not detected, indicating that the quasars are not exciting sufficiently the gas in their hosts. Finally, we also detect a potential emission of H2O, HCN (10-9) or a combination of both in the spectrum of a quasar at redshift 1.67.
Accepted for publication in A&A, 12 pages, 7 figures
References in corpus (34)
- The Sloan Digital Sky Survey Quasar Catalog: Sixteenth Data Release
- The Sloan Digital Sky Survey Quasar Catalog IV. Fifth Data Release
- Diagnostics of irradiated dense gas in galaxy nuclei. II. A grid of XDR and PDR models
- The XMM-Newton serendipitous survey IX. The fourth XMM-Newton serendipitous source catalogue
- SHARC-2 350 Micron Observations of Distant Submillimeter Selected Galaxies
- SoFiA: a flexible source finder for 3D spectral line data
- Photodissociation and X-Ray Dominated Regions
- Star formation in the hosts of high-z QSOs: Evidence from Spitzer PAH detections
- ALMA Observations Show Major Mergers Among the Host Galaxies of Fast-growing, High-redshift Supermassive Black Holes
- Rapidly growing black holes and host galaxies in the distant Universe from the Herschel Radio Galaxy Evolution Project
- ALMA Deep Field in SSA22: Source Catalog and Number Counts
- Simulated observations of sub-millimetre galaxies: the impact of single-dish resolution and field variance
- AGN Feedback and Star Formation of Quasar Host Galaxies: Insights from the Molecular Gas
- Mid-infrared spectroscopy of infrared-luminous galaxies at z~0.5-3
- The redshift evolution of major merger triggering of luminous AGN: a slight enhancement at z2
- Molecular gas in z~6 quasar host galaxies
- What produces the far-infrared/submm emission in the most luminous QSOs?
- CO Emission in Infrared-Selected Active Galactic Nuclei
- Extreme star formation events in quasar hosts over
- ALMA Observations of Quasar Host Galaxies at
- SUPER V. ALMA continuum observations of z~2 AGN and the elusive evidence of outflows influencing star formation
- Red quasars blow out molecular gas from galaxies during the peak of cosmic star formation
- Evidence of extended cold molecular gas and dust halos around Extremely Red Quasars with ALMA
- The effect of active galactic nuclei on the cold interstellar medium in distant star-forming galaxies
- Do broad absorption line quasars live in different environments from ordinary quasars?
- Resolving Disks & Mergers in Heavily Reddened Quasars and their Companion Galaxies with ALMA
- Powerful Radio-Loud Quasars are Triggered by Galaxy Mergers in the Cosmic Bright Ages
- Molecular gas and dust properties in quasar hosts
- Far-infrared emission in luminous quasars accompanied by nuclear outflows
- ALMACAL. XI. Over-densities as signposts to proto-clusters? A cautionary tale
- Quasar radiation transforms the gas in a merging companion galaxy
- Discovery of a Unique Close Quasar-DSFG Pair Linked by a [C II] Bridge at
- Submillimeter galaxy overdensities around physically associated quasar pairs
- ALMA High-Level Data Products: Submillimetre counterparts of SDSS quasars in the ALMA footprint