Invoking the virial theorem to understand the impact of (dry) mergers on the - relation
arXiv:2211.02187 · doi:10.1093/mnras/stac3173
Abstract
While dry mergers can produce considerable scatter in the (black hole mass, )-(spheroid stellar mass, ) and -(spheroid half-light radius, ) diagrams, the virial theorem is used here to explain why the scatter about the -(velocity dispersion, ) relation remains low in the face of such mergers. Its small scatter has been claimed as evidence of feedback from active galactic nuclei (AGNs). However, it is shown that galaxy mergers also play a significant role. The major merger of two S0 galaxies with M advances a system along a slope of 5 in the - diagram. However, a major EE galaxy merger moves a system (slightly) along a trajectory with a slope of 9, while mergers of lower-mass S0 galaxies with M move (slightly) along a trajectory with a slope of 3. This produces a steeper distribution for the E (and Es,e) galaxies in the - diagram, reported here to have a slope of 7.270.91, compared to the S0 galaxies which have a slope of 5.680.60. This result forms an important complement to the AGN feedback models like that from Silk and Rees, providing a more complete picture of galaxy/(black hole) coevolution. It also has important implications for nanohertz gravitational wave research. Abridged.
To appear in MNRAS (12 pages, including 7 figures and a 2 page Appendix)
References in corpus (38)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- The NANOGrav 12.5-year Data Set: Search For An Isotropic Stochastic Gravitational-Wave Background
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- The TianQin project: current progress on science and technology
- On the evidence for a common-spectrum process in the search for the nanohertz gravitational-wave background with the Parkes Pulsar Timing Array
- NANOGrav Hints to Primordial Black Holes as Dark Matter
- Common-red-signal analysis with 24-yr high-precision timing of the European Pulsar Timing Array: Inferences in the stochastic gravitational-wave background search
- The influence of gas on the structure of merger remnants
- Feedback from Active Galactic Nuclei: Energy- versus momentum-driving
- Solar-Mass Primordial Black Holes Explain NANOGrav Hint of Gravitational Waves
- The MeerKAT Telescope as a Pulsar Facility: System verification and early science results from MeerTime
- Galaxy And Mass Assembly (GAMA): relations of bulges, discs and spheroids
- Uniting Old Stellar Systems: From Globular Clusters to Giant Ellipticals
- Black Hole Mass Scaling Relations for Early-Type Galaxies: - and -
- AMUSE-Virgo I. Super-massive black holes in low-mass spheroids
- Improved Dynamical Constraints on the Mass of the central Black Hole in NGC 404
- Long-Term Evolution of Massive Black Hole Binaries. III. Binary Evolution in Collisional Nuclei
- Two new confirmed massive relic galaxies: red nuggets in the present-day Universe
- Hiding in plain sight: An abundance of compact massive spheroids in the local Universe
- The Different Environmental Dependencies of Star-formation for Giant and Dwarf Galaxies
- Correlation Between the Total Gravitating Mass of Groups and Clusters and the Supermassive Black Hole Mass of Brightest Galaxies
- The SAMI Galaxy Survey: Decomposed Stellar Kinematics of Galaxy Bulges and Disks
- Calibration of the virial factor in supermassive black hole masses of reverberation-mapped AGNs
- A galaxy classification grid that better recognises early-type galaxy morphology
- The origin of bulges and discs in the CALIFA survey: I. Morphological evolution
- Intermediate-mass-ratio-inspirals in the Einstein Telescope: I. Signal-to-noise ratio calculations
- Defining the (Black Hole)-Spheroid Connection with the Discovery of Morphology-Dependent Substructure in the -- and -- Diagrams: New Tests for Advanced Theories and Realistic Simulations
- . I. Understanding galaxy sizes, associated luminosity densities, and the artificial division of the early-type galaxy population
- Extremely massive disc galaxies in the nearby Universe form through gas-rich minor mergers
- Expected intermediate-mass black holes in the Virgo cluster. I. Early-type galaxies
- The Herschel Virgo Cluster Survey. XVIII. Star-forming dwarf galaxies in a cluster environment
- Improvement of the target sensitivity in DECIGO by optimizing its parameters for quantum noise including the effect of diffraction loss
- Disc cloaking: Establishing a lower limit to the number density of local compact massive spheroids/bulges and the potential fate of some high-z red nuggets
- Potential Black Hole Seeding of the Spiral Galaxy NGC 4424 via an Infalling Star Cluster
- Realistic triaxial density--potential--force profiles for stellar systems and dark matter halos
- Running Late: Testing Delayed Supermassive Black Hole Growth Models Against the Quasar Luminosity Function
- Central X-ray point-sources found to be abundant in low-mass, late-type galaxies predicted to contain an intermediate-mass black hole
- NGC 7457: Evidence for merger-driven cylindrical rotation in disc galaxies
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