On the frequency of star-forming galaxies in the vicinity of powerful AGNs: The case of SMM J04135+10277
arXiv:1610.02407 · doi:10.1051/0004-6361/201628173
Abstract
(Abridged) In the last decade several massive molecular gas reservoirs were found <100 kpc distance from active galactic nuclei (AGNs), residing in gas-rich companion galaxies. The study of AGN-gas-rich companion systems opens the opportunity to determine whether the stellar mass of massive local galaxies was formed in their host after a merger event or outside of their host galaxy in a close starbursting companion and later incorporated via mergers. We study the quasar-companion galaxy system of SMM J04135+10277 (z=2.84) and investigate the expected frequency of quasar-starburst galaxy pairs at high redshift using a cosmological galaxy formation model. We use archive data and new APEX ArTeMiS data to construct and model the spectral energy distribution of SMM J04135. We also carry out a comprehensive analysis of the cosmological galaxy formation model GALFORM with the aim of characterising how typical the system of SMM J04135 is and whether quasar-star-forming galaxy pairs may constitute an important stage in galaxy evolution. The companion galaxy of SMM J04135 is a heavily dust-obscured starburst galaxy with a median star formation rate (SFR) of , median dust mass of and median dust luminosity of . Our simulations, performed at z=2.8, suggest that SMM J04135 is not unique. In fact, at a distance of <100 kpc, 22% of our simulated quasar sample have at least one companion galaxy of a stellar mass , and 0.3% have at least one highly star-forming companion (). Our results suggest that quasar-gas-rich companion galaxy systems are common phenomena in the early Universe and the high incidence of companions makes the study of such systems crucial to understand the growth and hierarchical build-up of galaxies and black holes.
10 pages, 5 figures, accepted for publication in A&A
References in corpus (19)
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- A primer on hierarchical galaxy formation: the semi-analytical approach
- An ALMA survey of Sub-millimeter Galaxies in the Extended Chandra Deep Field South: Physical properties derived from ultraviolet-to-radio modelling
- Ram pressure stripping the hot gaseous halos of galaxies in groups and clusters
- An ALMA survey of submillimetre galaxies in the Extended Chandra Deep Field South: High resolution 870um source counts
- MegaPipe: the MegaCam image stacking pipeline at the Canadian Astronomical Data Centre
- Star formation in the hosts of high-z QSOs: Evidence from Spitzer PAH detections
- A Detection of [CII] line emission in the z=4.7 QSO BR1202-0725
- Detection of Two Massive CO Systems in 4C 41.17 at z = 3.8
- The origin of the atomic and molecular gas contents of early-type galaxies. I. A new test of galaxy formation physics
- Interferometric imaging of the high-redshift radio galaxy, 4C60.07: An SMA, Spitzer and VLA study reveals a binary AGN/starburst
- The evolution of the star forming sequence in hierarchical galaxy formation models
- First 450-micron dust continuum mapping of the massive star-forming region NGC 3576 with the P-ArTeMiS bolometer camera
- Environments of z>5 quasars: searching for protoclusters at submillimetre wavelengths
- BR1202-0725: An Extreme Multiple Merger at z = 4.7
- (Sub)millimetre interferometric imaging of a sample of COSMOS/AzTEC submillimetre galaxies - I. Multiwavelength identifications and redshift distribution
- Submillimetre observations of WISE/radio-selected AGN and their environments
- A parametric study of possible solutions to the high-redshift overproduction of stars in modeled dwarf galaxies
- SMM J04135+10277: A Candidate Early-Stage "Wet-Dry" Merger of Two Massive Galaxies at z=2.8
Cited by in corpus (5)
- The WISSH QSOs project IX. Cold gas content and environment of luminous QSOs at z~2.4-4.7
- Characterization of Two 2mm-detected Optically-Obscured Dusty Star-Forming Galaxies
- SMM J04135+10277: A distant QSO-starburst system caught by ALMA
- The SUPERCOLD-CGM survey: \\ I. Probing the extended CO(4-3) Emission of the Circumglactic medium in a sample of 10 Enormous Ly Nebulae at
- Exploring the environment, magnetic fields, and feedback effects of massive high-redshift galaxies with [CII]