On the transition from nuclear-cluster to black-hole dominated galaxy cores
arXiv:1004.3627 · doi:10.1088/2041-8205/714/2/L313
Abstract
Giant elliptical galaxies, believed to be built from the merger of lesser galaxies, are known to house a massive black hole at their center rather than a compact star cluster. If low- and intermediate-mass galaxies do indeed partake in the hierarchical merger scenario, then one needs to explain why their dense nuclear star clusters are not preserved in merger events. A valuable clue may the recent revelation that nuclear star clusters and massive black holes frequently co-exist in intermediate mass bulges and elliptical galaxies. In an effort to understand the physical mechanism responsible for the disappearance of nuclear star clusters, we have numerically investigated the evolution of merging star clusters with seed black holes. Using black holes that are 1-5% of their host nuclear cluster mass, we reveal how their binary coalescence during a merger dynamically heats the newly wed star cluster, expanding it, significantly lowering its central stellar density, and thus making it susceptible to tidal destruction during galaxy merging. Moreover, this mechanism provides a pathway to explain the observed reduction in the nucleus-to-galaxy stellar mass ratio as one proceeds from dwarf to giant elliptical galaxies.
15 page, 5 figures, accepted in ApJL
References in corpus (10)
- The ACS Virgo Cluster Survey. VIII. The Nuclei of Early-Type Galaxies
- Quantifying the Coexistence of Massive Black Holes and Dense Nuclear Star Clusters
- The Coincidence of Nuclear Star Clusters and Active Galactic Nuclei
- From Supermassive Black Holes to Dwarf Elliptical Nuclei: a Mass Continuum
- The ACS Fornax Cluster Survey. II. The Central Brightness Profiles of Early-Type Galaxies: A Characteristic Radius on Nuclear Scales and the Transition from Central Luminosity Deficit to Excess
- Long-Term Evolution of Massive Black Hole Binaries. III. Binary Evolution in Collisional Nuclei
- Self-consistent simulations of Nuclear Cluster formation through Globular Cluster orbital decay and merging
- HST/WFPC2 imaging of the circumnuclear structure of LLAGNs. I Data and nuclear morphology
- Dissipative transformation of non-nucleated dwarf galaxies into nucleated systems
- Competitive feedback in galaxy formation
Cited by in corpus (37)
- An expanded M_bh-sigma diagram, and a new calibration of active galactic nuclei masses
- Nuclear Star Clusters
- Masses and Scaling Relations for Nuclear Star Clusters, and their Coexistence with Central Black Holes
- Co-evolution of nuclear star clusters, massive black holes and their host galaxies
- Origin and growth of nuclear star clusters around massive black holes
- The ACS Fornax Cluster Survey. VI. The Nuclei of Early-Type Galaxies in the Fornax Cluster
- The (black hole)-bulge mass scaling relation at low masses
- The HST/ACS Coma Cluster Survey. X. Nuclear star clusters in low-mass early-type galaxies: scaling relations
- eLISA: Astrophysics and cosmology in the millihertz regime
- Updated Mass Scaling Relations for Nuclear Star Clusters and a Comparison to Supermassive Black Holes
- Galaxy bulges and their massive black holes: a review
- The nuclear cluster of the Milky Way: Our primary testbed for the interaction of a dense star cluster with a massive black hole
- On central black holes in ultra-compact dwarf galaxies
- The Globular Cluster Migratory Origin of Nuclear Star Clusters
- Are nuclear star clusters the precursors of massive black holes?
- Central Stellar Mass Deficits in the Bulges of Local Lenticular Galaxies, and the Connection with Compact z ~ 1.5 Galaxies
- Henize 2-10: the ongoing formation of a nuclear star cluster around a massive black hole
- Extending the M_(bh)-sigma diagram with dense nuclear star clusters
- AMUSE-Field I: Nuclear X-ray Properties of Local Field and Group Spheroids across the Stellar Mass Scale
- Sizing up Partially-Depleted Galaxy Cores
- A remarkably large depleted core in the Abell 2029 BCG IC 1101
- Lack of nuclear clusters in dwarf spheroidal galaxies: implications for massive black holes formation and the cusp/core problem
- Supermassive black holes coalescence mediated by massive perturbers: implications for gravitational waves emission and nuclear cluster formation
- On the relation between the mass of Compact Massive Objects and their host galaxies
- The dearth of nuclear star clusters in bright galaxies
- The MEGaN project I. Missing formation of massive nuclear clusters and tidal disruption events by star clusters - massive black hole interactions
- The MBHBM Project -- II. Molecular Gas Kinematics in the Lenticular Galaxy NGC 3593 Reveal a Supermassive Black Hole
- Formation of supermassive black holes in galactic nuclei II: retention and growth of seed intermediate-mass black holes
- A consistency-test for determining whether ultra-compact dwarf galaxies could be the remnant nuclei of threshed galaxies
- Reading the tea leaves in the - and - diagrams: dry and gaseous mergers with remnant angular momentum
- Formation of ultra-compact blue dwarf galaxies and their evolution into nucleated dwarfs
- Black hole and nuclear cluster scaling relations: M_bh ~ M_nc^{2.7+/-0.7}
- MOCCA-Survey Database: Extra Galactic Globular Clusters. II. Milky Way and Andromeda
- The DIVING Survey -- Deep IFS View of Nuclei of Galaxies -- I. Definition and Sample Presentation
- Formation of massive black holes in ultra-compact dwarf galaxies: migration of primordial intermediate-mass black holes in N-body simulation
- Massive Black Hole Mergers
- Elliptical (E) and ellicular (ES) galaxies in the M_bh-M_*,sph diagram, and a merger-driven explanation for the origin of ES galaxies, anti-truncated stellar discs in lenticular galaxies, and the Sersicification of E galaxy light profiles