Decoupling the rotation of stars and gas -- II: the link between black hole activity and MaNGA kinematics in TNG
arXiv:1911.05091 · doi:10.1093/mnras/staa1494
Abstract
We study the relationship between supermassive black hole (BH) feedback, BH luminosity and the kinematics of stars and gas for galaxies in IllustrisTNG. We use a sample of galaxies with mock MaNGA observations to identify kinematic misalignment at (difference in rotation of stars and gas), for which we follow the evolutionary history of BH activity and gas properties over the last 8 Gyrs. Misaligned low mass galaxies typically have boosted BH luminosity, BH growth and have had more energy injected into the gas over the last 8 Gyr in comparison to aligned galaxies. These properties likely lead to outflows and gas loss, in agreement with active low mass galaxies in observations. We show that splitting on BH luminosity at produces statistically consistent distributions of kinematic misalignment at , however, splitting on the maximum BH luminosity over the last 8 Gyrs does not. While instantaneous correlation at is difficult due to misalignment persisting on longer timescales, the relationship between BH activity and misalignment is clear. High mass quenched galaxies with misalignment typically have similar BH luminosities, show no overall gas loss, and have typically lower gas phase metallicity over the last 8 Gyrs in comparison to those aligned; suggesting external origin.
5 pages, 3 Figures, Submitted to MNRAS letters. For first paper in series, see arXiv:1910.10744
References in corpus (10)
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Sequence
- SDSS-IV MaNGA: Properties of galaxies with kinematically decoupled stellar and gaseous components
- Fast and energetic AGN-driven outflows in simulated dwarf galaxies
- Decoupling the rotation of stars and gas -- I: the relationship with morphology and halo spin
- The first 62 AGN observed with SDSS-IV MaNGA -- III: stellar and gas kinematics
- SimSpin -- Constructing mock IFS kinematic data cubes
- Star-gas misalignment in galaxies: I. The properties of galaxies from the Horizon-AGN simulation and comparisons to SAMI
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- The Impact of Merging on The Origin of Kinematically Misaligned and Counter-rotating Galaxies in MaNGA
- SDSS-IV MaNGA: Global Properties of Kinematically Misaligned Galaxies
- An increase in black hole activity in galaxies with kinematically misaligned gas
- SDSS-IV MaNGA : spatial resolved properties of kinematically misaligned galaxies
- Evidence of wind signatures in the gas velocity profiles of Red Geysers
- Star-Gas Misalignment in Galaxies: II. Origins Found from the Horizon-AGN Simulation
- Realistic synthetic integral field spectroscopy with RealSim-IFS
- Signatures of inflowing gas in red geyser galaxies hosting radio-AGN
- The origin of star-gas misalignments in simulated galaxies
- A p<0.0001 detection of CMB cooling in galactic halos and its possible relation to dark matter
- Stellar-gas kinematic misalignments in EAGLE: lifetimes and longevity of misaligned galaxies
- Kinematic misalignment as a driver of black hole activity in galaxies with external interactions