Formation and spatial distribution of hypervelocity stars in AGN outflows
arXiv:1706.04201 · doi:10.1016/j.newast.2017.12.004
Abstract
We study star formation within outflows driven by active galactic nuclei (AGN) as a new source of hypervelocity stars (HVSs). Recent observations revealed active star formation inside a galactic outflow at a rate of . We verify that the shells swept up by an AGN outflow are capable of cooling and fragmentation into cold clumps embedded in a hot tenuous gas via thermal instabilities. We show that cold clumps of are formed within yrs. As a result, stars are produced along outflow's path, endowed with the outflow speed at their formation site. These HVSs travel through the galactic halo and eventually escape into the intergalactic medium. The expected instantaneous rate of star formation inside the outflow is orders of magnitude greater than the average rate associated with previously proposed mechanisms for producing HVSs, such as the Hills mechanism and three-body interaction between a star and a black hole binary. We predict the spatial distribution of HVSs formed in AGN outflows for future observational probe.
References in corpus (18)
- Theory of Star Formation
- Giant Gamma-ray Bubbles from Fermi-LAT: AGN Activity or Bipolar Galactic Wind?
- Wind from the black-hole accretion disk driving a molecular outflow in an active galaxy
- Star formation in a galactic outflow
- Blowin' in the wind: both `negative' and `positive' feedback in an obscured high-z Quasar
- Cold, clumpy accretion onto an active supermassive black hole
- The origin of fast molecular outflows in quasars: molecule formation in AGN-driven galactic winds
- Anatomy of the AGN in NGC 5548: II. The Spatial, Temporal and Physical Nature of the Outflow from HST/COS Observations
- Fast cold gas in hot AGN outflows
- The impact of magnetic fields on thermal instability
- Hypervelocity runaways from the Large Magellanic Cloud
- Do AGN outflows quench or enhance star formation?
- The Anisotropic Spatial Distribution of Hypervelocity Stars
- A Dipole on the Sky: Predictions for Hypervelocity Stars from the Large Magellanic Cloud
- The Production of Cold Gas Within Galaxy Outflows
- On the Formation of Molecular Clumps in QSO Outflows
- How the central black hole may shape its host galaxy through AGN feedback
- Feedback by AGN Jets and Wide-Angle Winds on a Galactic Scale
Cited by in corpus (15)
- The Biggest Splash
- Relativistic jet feedback III: feedback on gas disks
- Molecular outflows in local galaxies: Method comparison and a role of intermittent AGN driving
- Widespread star formation inside galactic outflows
- Quasar Feedback Survey: Multi-phase outflows, turbulence and evidence for feedback caused by low power radio jets inclined into the galaxy disk
- Black Hole Accretion Correlates with Star Formation Rate and Star Formation Efficiency in Nearby Luminous Type 1 Active Galaxies
- The Fastest Travel Together: Chemical Tagging of the Fastest Stars in Gaia DR2 to the Stellar Halo
- Determining star-formation rates in Active Galactic Nuclei hosts via stellar population synthesis
- Enhanced UV radiation and dense clumps in Mrk231's molecular outflow
- Mapping the stellar population and gas excitation of MaNGA galaxies with MEGACUBES. Results for AGN versus control sample
- Gemini NIFS survey of feeding and feedback processes in nearby Active Galaxies: VI -- Stellar Populations
- Oxygen abundances in the narrow line regions of Seyfert galaxies and the metallicity-luminosity relation
- Probing modified Newtonian dynamics with hypervelocity stars
- The Type Ia Supernova 2021hem: A 2003fg-like Event in an Apparently Hostless Environment
- Self-sustaining star formation fronts in filaments during cosmic dawn